PPI network (data source: BioGrid)

Symbol A GeneA coding DNM count Symbol B GeneB coding DNM count Interaction detection method Publication Evidence
RASSF1 3 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
NSD3 6 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
PIK3CA 8 ARAF 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
AKT1 1 TERT 7 affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Kawauchi K (2005), Kim MO (2008), Ivanov AA (2017) 3
FZR1 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
SOX3 0 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 WNK1 7 two hybrid Kim YS (2007) 1
MAP2K5 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 CDK6 0 affinity chromatography technology, fluorescent resonance energy transfe Varjosalo M (2013), Ivanov AA (2017) 2
BECN1 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
SOX3 0 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 CCND2 2 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Lin J (2001), Kehn K (2004), Kehn K (2004), Sweeney KJ (1997), Huttlin EL (2015), Huttlin EL (2017), Denicourt C (2008), Ivanov AA (2017) 8
NF2 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 MAP2K6 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 MYC 2 affinity chromatography technology Choudhury NR (2017) 1
NFIC 5 GLIS1 4 fluorescent resonance energy transfe Ivanov AA (2017) 1
NSD3 6 NFIC 5 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
TEAD2 2 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 GLIS2 2 affinity chromatography technology Choudhury NR (2017) 1
MAP2K6 2 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 CTNNB1 30 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology Zhang KL (2014), Zhang KL (2014), Xi Y (2013) 3
ARNT 1 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CTNNB1 30 two hybrid, affinity chromatography technology, pull down Kim YS (2007), Kim YS (2007), Kim YS (2007) 3
GLIS2 2 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 NSD3 6 two hybrid Arroyo R (2015) 1
MAP2K5 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
LATS2 1 RASSF1 3 fluorescent resonance energy transfe, pull down, fluorescent resonance energy transfe Mo XL (2015), Mo XL (2015), Ivanov AA (2017) 3
MAP2K6 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 MDM2 2 affinity chromatography technology, affinity chromatography technology, pull down, enzymatic study, affinity chromatography technology, pull down Oh W (2010), Oh W (2010), Oh W (2010), Oh W (2010), Hu C (2015), Hu C (2015) 6
CBLC 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 SOX3 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
BBS1 2 BBS2 1 affinity chromatography technology, affinity chromatography technology Huttlin EL (2017), Boldt K (2016) 2
ERBB2 6 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 MYC 2 enzymatic study, two hybrid, fluorescent resonance energy transfe Anders L (2011), Wang J (2011), Ivanov AA (2017) 3
HGF 1 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 BECN1 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 FZR1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 CBLC 1 affinity chromatography technology Takeshita K (2012) 1
TERT 7 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 CTNNB1 30 affinity chromatography technology Choudhury NR (2017) 1
RASSF1 3 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 CDKN2A 1 affinity chromatography technology, unspecified method, pull down, two hybrid, two hybrid, pull down, affinity chromatography technology, pull down, two hybrid, affinity chromatography technology, two hybrid, pull down, two hybrid, pull down, pull down, pull down, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Ewing RM (2007), Fahraeus R (1996), Li J (2004), Sugimoto M (1999), Serrano M (1993), Serrano M (1993), Serrano M (1993), Coleman KG (1997), Zhang Y (1998), Haddad MM (1999), Li J (2002), Li J (2002), Lal G (2000), Yarbrough WG (1999), Della Torre G (2001), Jones R (2007), Jones R (2007), Ramachandran N (2004), Varjosalo M (2013), Varjosalo M (2013), Huttlin EL (2015), Hein MY (2015), Fei HJ (2017), Huttlin EL (2017), Ivanov AA (2017) 25
CDKN2A 1 MYC 2 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Herkert B (2010), Amente S (2007), Zhang Q (2013), Ivanov AA (2017) 4
WT1 1 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 BECN1 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 MAP2K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 HIF1A 1 affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Fatyol K (2001), Fatyol K (2001), Ivanov AA (2017) 3
RASSF1 3 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS1 4 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 MAP3K5 1 affinity chromatography technology, biochemical, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe McLaughlin NJ (2006), McLaughlin NJ (2006), Yoon KW (2009), Yoon KW (2009), Ivanov AA (2017) 5
TEAD2 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM32 2 GLIS2 2 affinity chromatography technology, pull down Ramachandran H (2014), Ramachandran H (2014) 2
CBLC 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 HGF 1 pull down, enzymatic study, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Comoglio PM (1993), Comoglio PM (1993), Naldini L (1991), Goldoni S (2009), Ivanov AA (2017) 5
GLIS2 2 MDM2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 MAP2K6 2 pull down, enzymatic study, two hybrid, enzymatic study, enzymatic study Huang S (2003), Morita K (2001), Takekawa M (2005), Mo JS (2010), Hwang SG (2014) 5
CDKN2B 0 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 PML 7 affinity chromatography technology, affinity chromatography technology Oh W (2009), Oh W (2009) 2
MAP3K5 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 HIF1A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
PML 7 ARNT 1 pull down Tojo M (2002) 1
MET 7 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
PML 7 GLIS2 2 affinity chromatography technology Ramachandran H (2014) 1
NSD3 6 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 MDM2 2 pull down, two hybrid, enzymatic study, pull down, affinity chromatography technology, x-ray crystallography, affinity chromatography technology, affinity chromatography technology, pull down, pull down, imaging technique, two hybrid, affinity chromatography technology, enzymatic study, pull down, pull down, enzymatic study, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, enzymatic study, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, protein complementation assay, affinity chromatography technology, imaging technique, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, two hybrid, pull down, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, biochemical, two hybrid, two hybrid, x-ray crystallography, affinity chromatography technology, pull down, affinity chromatography technology, pull down, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, unspecified method, pull down, enzymatic study, pull down, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe, affinity chromatography technology, pull down, fluorescent resonance energy transfe, affinity chromatography technology, affinity chromatography technology Kadakia M (2002), Tanimura S (1999), Badciong JC (2002), Tanimura S (1999), Tanimura S (1999), Linke K (2008), Okamoto K (2005), Pan Y (2003), Kashuba E (2011), Kashuba E (2011), Ohtsubo C (2009), Singh RK (2007), Zhu Y (2009), Zhu Y (2009), Allende-Vega N (2010), Okamoto K (2009), Okamoto K (2009), Li X (2011), Nie J (2010), Nie J (2010), Li M (2011), Li M (2011), Singh RK (2007), de Graaf P (2003), Wade M (2012), Uldrijan S (2007), Wade M (2012), Stad R (2000), Dolezelova P (2012), Kulikov R (2005), Kawai H (2007), Kawai H (2007), Miller KR (2010), Sharp DA (1999), Sharp DA (1999), Sharp DA (1999), Sharp DA (1999), Sharp DA (1999), Li C (2002), Wu S (2012), Ranaweera RS (2013), Woodsmith J (2012), Wang J (2011), Egorova O (2014), Chang YS (2013), Malbert-Colas L (2014), Yasuhara T (2014), Yasuhara T (2014), Iyappan S (2010), Stad R (2001), Marcar L (2015), Ling X (2014), Leslie PL (2015), Jacob AG (2014), Jacob AG (2014), Tournillon AS (2015), Tournillon AS (2015), Tournillon AS (2015), Zhang H (2015), Chen L (2015), Pellegrino M (2015), Pellegrino M (2015), Pellegrino M (2015), Medina-Medina I (2016), Medina-Medina I (2016), Moscetti I (2016), Liu T (2017), Liu T (2017), Liu T (2017), Huttlin EL (2017), Wu W (2015), Ivanov AA (2017), Mancini F (2016), Mancini F (2016) 74
CDK4 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCNE1 1 CDK4 2 affinity chromatography technology, fluorescent resonance energy transfe Datta NS (1998), Ivanov AA (2017) 2
LATS2 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 CTNNB1 30 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, imaging technique, pull down, far western blotting Schroeder JA (2002), Bonvini P (2001), Schroeder JA (2002), Schroeder JA (2002), Kanai Y (1995), Kanai Y (1995) 6
STK11 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 HIF1A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 FZR1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 RAF1 3 affinity chromatography technology, pull down, fluorescent resonance energy transfe Chen J (2001), Chen J (2001), Ivanov AA (2017) 3
MDM4 0 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 MAP2K6 2 genetic interference, affinity chromatography technology, imaging technique, affinity chromatography technology, fluorescent resonance energy transfe Huber TB (2001), Huttlin EL (2015), Chen TC (2014), Huttlin EL (2017), Ivanov AA (2017) 5
MYC 2 RAF1 3 pull down, affinity chromatography technology, fluorescent resonance energy transfe Alexandrov I (1997), Koch HB (2007), Ivanov AA (2017) 3
RASSF1 3 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 HGF 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 GPSM2 2 two hybrid Kim YS (2007) 1
CBLC 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NSD3 6 SOX3 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 HIF1A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 CDKN2A 1 affinity chromatography technology, fluorescent resonance energy transfe Jackson MW (2001), Ivanov AA (2017) 2
MAP2K3 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS1 4 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 BECN1 2 pull down, fluorescent resonance energy transfe Pimkina J (2009), Ivanov AA (2017) 2
GLIS1 4 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
U2AF2 7 RBFOX2 5 two hybrid, two hybrid Hegele A (2012), Hegele A (2012) 2
MAP2K5 1 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 CCND2 2 pull down, pull down, fluorescent resonance energy transfe Li J (2004), Li J (2002), Ivanov AA (2017) 3
TEAD2 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
AKT1 1 CTNNB1 30 enzymatic study, enzymatic study Tian Q (2004), Fang D (2007) 2
RAF1 3 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 MYC 2 enzymatic study, fluorescent resonance energy transfe Anders L (2011), Ivanov AA (2017) 2
FZR1 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 MAP2K3 1 affinity chromatography technology Choudhury NR (2017) 1
LATS2 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TEAD2 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
LATS2 1 CTNNB1 30 bioid, affinity chromatography technology, affinity chromatography technology, pull down Couzens AL (2013), Li J (2013), Li J (2013), Li J (2013) 4
RASSF1 3 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 BECN1 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BBS1 2 GLIS2 2 affinity chromatography technology Ramachandran H (2014) 1
CBLC 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 RAF1 3 affinity chromatography technology Choudhury NR (2017) 1
GLIS1 4 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 CD44 1 affinity chromatography technology Choudhury NR (2017) 1
HIF1A 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NSD3 6 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
PML 7 CTNNB1 30 affinity chromatography technology, pull down, affinity chromatography technology Satow R (2012), Satow R (2012), Shtutman M (2002) 3
NF2 1 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 RBFOX2 5 affinity chromatography technology Choudhury NR (2017) 1
GLIS2 2 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 MDM2 2 affinity chromatography technology Choudhury NR (2017) 1
MET 7 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
NSD3 6 CBLC 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 CBLC 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 PML 7 enzymatic study Yuan WC (2011) 1
MAP2K5 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CTNNB1 30 CCNE1 1 pull down, affinity chromatography technology, affinity chromatography technology Park CS (2004), Park CS (2004), Park CS (2004) 3
MYC 2 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
AKT1 1 RAF1 3 enzymatic study, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Zimmermann S (1999), Zimmermann S (1999), Wang J (2009), Wang J (2009), Ivanov AA (2017) 5
BECN1 2 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 GLIS1 4 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 RBFOX2 5 two hybrid Kim YS (2007) 1
CDK4 2 CDKN2B 0 two hybrid, two hybrid, two hybrid, two hybrid, affinity chromatography technology, fluorescent resonance energy transfe, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Rual JF (2005), Stelzl U (2005), Vinayagam A (2011), Xin X (2009), Varjosalo M (2013), Varjosalo M (2013), Varjosalo M (2013), Varjosalo M (2013), Huttlin EL (2015), Hein MY (2015), Huttlin EL (2017), Ivanov AA (2017) 12
GLIS2 2 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 GPSM2 2 affinity chromatography technology Choudhury NR (2017) 1
RASSF1 3 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 LATS2 1 two hybrid, affinity chromatography technology, affinity chromatography technology Aylon Y (2006), Aylon Y (2006), Aylon Y (2006) 3
CDK6 0 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 RASSF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS1 4 SOX3 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS1 4 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 FZR1 1 affinity chromatography technology Choudhury NR (2017) 1
RAF1 3 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 CTNNB1 30 affinity chromatography technology Davies G (2001) 1
HGF 1 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2B 0 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 XAB2 0 two hybrid Kim YS (2007) 1
WT1 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
LATS2 1 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
EPHA2 3 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2B 0 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
WT1 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
LATS2 1 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 FZR1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 WNK1 7 affinity chromatography technology Choudhury NR (2017) 1
RASSF1 3 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM4 0 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 HIF1A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 PML 7 affinity chromatography technology, affinity chromatography technology, imaging technique Ivanschitz L (2015), Ivanschitz L (2015), Ivanschitz L (2015) 3
ARNT 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TEAD2 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
U2AF2 7 WT1 1 two hybrid, affinity chromatography technology, pull down Davies RC (1998), Davies RC (1998), Davies RC (1998) 3
PML 7 MDM2 2 affinity chromatography technology, pull down, affinity chromatography technology, pull down, pull down, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, enzymatic study, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology Bernardi R (2004), Bernardi R (2004), Zhu H (2003), Zhu H (2003), Kurki S (2003), Kurki S (2003), Wei X (2003), Wei X (2003), Wu Q (2009), Chu Y (2011), Yang Q (2013), Yang Q (2013), Bursac S (2012) 13
MDM2 2 AKT1 1 affinity chromatography technology, enzymatic study, affinity chromatography technology, enzymatic study, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, enzymatic study, affinity chromatography technology, affinity chromatography technology, imaging technique Lin HK (2002), Ogawara Y (2002), Zhou BP (2001), Zhou BP (2001), Kim CK (2011), Kim CK (2011), Zhu QS (2011), Milne D (2004), Deep G (2008), Deep G (2008), Chen TC (2014) 11
CDK6 0 CCND2 2 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Lin J (2001), Sweeney KJ (1997), Varjosalo M (2013), Ivanov AA (2017) 4
PIK3CA 8 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 TRIM25 5 two hybrid Arroyo R (2015) 1
GLIS2 2 SPECC1L 5 two hybrid Kim YS (2007) 1
LATS2 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 CTNNB1 30 imaging technique Chen TC (2014) 1
ARNT 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
SOX3 0 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CPSF1 6 two hybrid Kim YS (2007) 1
GLIS1 4 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 HIF1A 1 affinity chromatography technology, two hybrid, pull down, affinity chromatography technology, imaging technique, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, biochemical, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, pull down, affinity chromatography technology, pull down, two hybrid, two hybrid, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, pull down, pull down, two hybrid, imaging technique, fluorescent resonance energy transfe, fluorescent resonance energy transfe, pull down, two hybrid, two hybrid Woods SL (2002), Hogenesch JB (1997), Hogenesch JB (1997), Behrends C (2010), Wang F (2004), Lim W (2011), Sufan RI (2009), Sufan RI (2009), Katschinski DM (2004), Katschinski DM (2004), Chun YS (2002), Hein MY (2015), Huttlin EL (2017), Kalousi A (2010), Kalousi A (2010), Isaacs JS (2004), Chilov D (1999), Chilov D (1999), Chilov D (1999), Kallio PJ (1997), Amir S (2009), Yang L (2008), Hur E (2002), Lando D (2000), Sadek CM (2000), Chapman-Smith A (2006), Suzuki H (2001), Suzuki H (2001), Li YM (2005), Jiang BH (1996), Jiang BH (1996), Jiang BH (1996), Jiang BH (1996), Park EJ (2006), Park EJ (2006), Ruas JL (2005), Wotzlaw C (2007), Ivanov AA (2017), Depping R (2004), Depping R (2004), Depping R (2004) 41
RAF1 3 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 WNK1 7 two hybrid Wang J (2011) 1
GLIS2 2 U2AF2 7 two hybrid Kim YS (2007) 1
MET 7 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 SOX3 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 MDM2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 ARNT 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 XAB2 0 affinity chromatography technology Huttlin EL (2017) 1
ARNT 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 ERBB2 6 genetic interference, fluorescent resonance energy transfe Shen JP (2017), Ivanov AA (2017) 2
AKT1 1 NF2 1 affinity chromatography technology, affinity chromatography technology, pull down, pull down, enzymatic study, pull down, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Tang X (2007), Tang X (2007), Tang X (2007), Tang X (2007), Laulajainen M (2011), Laulajainen M (2011), Laulajainen M (2011), Laulajainen M (2011), Ivanov AA (2017) 9
HIF1A 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 HIF1A 1 pull down, affinity chromatography technology, enzymatic study, two hybrid, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, pull down, affinity chromatography technology Chen D (2003), Chen D (2003), Ravi R (2000), Lee YM (2009), Lee YM (2009), Lee YM (2009), Maroni P (2014), Amelio I (2015), Yoo YG (2004), LaRusch GA (2007), LaRusch GA (2007), Nieminen AL (2005) 12
CCNE1 1 CDK6 0 affinity chromatography technology, fluorescent resonance energy transfe Datta NS (1998), Ivanov AA (2017) 2
CBLC 1 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
EPHA2 3 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 CDK6 0 unspecified method, x-ray crystallography, pull down, pull down, pull down, affinity chromatography technology, enzymatic study, pull down, affinity chromatography technology, pull down, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Fahraeus R (1996), Russo AA (1998), Kaldis P (2001), Yarbrough WG (1999), Della Torre G (2001), Ezhevsky SA (1997), Ezhevsky SA (1997), Jones R (2007), Jones R (2007), Ramachandran N (2004), Varjosalo M (2013), Souza-Rodrigues E (2007), Huttlin EL (2015), Huttlin EL (2017), Ivanov AA (2017) 15
BECN1 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 PML 7 affinity chromatography technology, affinity chromatography technology, pull down Cairo S (2005), Buschbeck M (2007), Buschbeck M (2007) 3
CD44 1 ERBB2 6 affinity chromatography technology, fluorescent resonance energy transfe Tsatas D (2002), Ivanov AA (2017) 2
CDK6 0 CDKN2B 0 affinity chromatography technology, fluorescent resonance energy transfe, affinity chromatography technology, two hybrid, affinity chromatography technology, fluorescent resonance energy transfe, affinity chromatography technology, fluorescent resonance energy transfe Varjosalo M (2013), Varjosalo M (2013), Varjosalo M (2013), Rolland T (2014), Huttlin EL (2015), Mo XL (2015), Huttlin EL (2017), Ivanov AA (2017) 8
NF2 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 WNK1 7 genetic interference Toyoshima M (2012) 1
MDM2 2 U2AF2 7 affinity chromatography technology Jacob AG (2014) 1
ARAF 0 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 HIF1A 1 affinity chromatography technology, affinity chromatography technology, fluorescent resonance energy transfe Koshiji M (2004), Koshiji M (2004), Ivanov AA (2017) 3
MAP2K6 2 MAP2K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK4 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 MAP2K3 1 genetic interference, fluorescent resonance energy transfe, affinity chromatography technology, affinity chromatography technology Toyoshima M (2012), Ivanov AA (2017), Ivanov AA (2017), Ivanov AA (2017) 4
NSD3 6 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
STK11 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
LATS2 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 HIF1A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARNT 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 CDKN2A 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 NFIC 5 affinity chromatography technology Choudhury NR (2017) 1
BECN1 2 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
SOX3 0 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 BECN1 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 RAF1 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 MAP3K5 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ERBB2 6 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2B 0 CD44 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
PIK3CA 8 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K3 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 CDK6 0 affinity chromatography technology Choudhury NR (2017) 1
GLIS2 2 CBLC 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MYC 2 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 GLIS2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
PIK3CA 8 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 MDM4 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
TEAD2 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCNE1 1 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
FGFR4 6 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDK6 0 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 CDKN2A 1 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, two hybrid, pull down, pull down, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, unspecified method, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, two hybrid, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, two hybrid, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, affinity chromatography technology, pull down, affinity chromatography technology, affinity chromatography technology, pull down, fluorescent resonance energy transfe Zhang Y (2003), Zhang Y (2003), Zhang Y (2003), Zhang Y (1998), Zhang Y (1998), Zhang Y (1998), Zhang Y (1998), Zhang Y (1998), Clark PA (2002), Clark PA (2002), Clark PA (2002), Pomerantz J (1998), Ivanchuk SM (2008), Wang C (2005), Wang X (2001), Midgley CA (2000), Shen J (2011), Li L (2010), Li L (2010), Li X (2011), Woods YL (2004), Bouska A (2008), Lindstroem MS (2007), Lohrum MA (2000), Wang J (2006), Wang J (2006), Wang J (2006), Drago-Ferrante R (2008), Schuster K (2007), Hogan C (2008), Rizos H (2000), Gargano B (2008), Kamijo T (1998), Wang S (2010), Jones R (2007), Stott FJ (1998), Lo D (2014), Pimkina J (2009), Blattner C (2002), Leslie PL (2015), Bothner B (2003), Ivanov AA (2017) 42
NFIC 5 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
AKT1 1 ARNT 1 affinity chromatography technology, affinity chromatography technology, enzymatic study, fluorescent resonance energy transfe Li YM (2005), Li YM (2005), Li YM (2005), Ivanov AA (2017) 4
MET 7 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
PIK3CA 8 AKT1 1 affinity chromatography technology, protein complementation assay, affinity chromatography technology, enzymatic study Mitra S (2011), Miao B (2010), Xiong Y (2009), Akil H (2015) 4
MYC 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
NFIC 5 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 BECN1 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 CDK4 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CBLC 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
GLIS2 2 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TRIM25 5 PML 7 affinity chromatography technology Choudhury NR (2017) 1
PIK3CA 8 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 ERBB2 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
TEAD2 2 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
FZR1 1 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP3K5 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K5 1 MET 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
NF2 1 LATS2 1 x-ray crystallography, affinity chromatography technology, fluorescent resonance energy transfe, affinity chromatography technology Li Y (2015), Yin F (2013), Ivanov AA (2017), Zhu C (2018) 4
AKT1 1 MAP3K5 1 affinity chromatography technology, enzymatic study Kim AH (2001), Kim AH (2001) 2
MAP2K5 1 MYC 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
EPHA2 3 CDKN2B 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 HGF 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CD44 1 NF2 1 affinity chromatography technology, unspecified method, fluorescent resonance energy transfe Tang X (2007), Mori T (2014), Ivanov AA (2017) 3
CDK6 0 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2A 1 NSD3 6 two hybrid Arroyo R (2015) 1
MET 7 CDK6 0 fluorescent resonance energy transfe Ivanov AA (2017) 1
CDKN2B 0 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RASSF1 3 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
ARAF 0 FGFR4 6 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 WT1 1 two hybrid Wang J (2011) 1
SOX3 0 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
BBS2 1 GLIS2 2 affinity chromatography technology Ramachandran H (2014) 1
ARNT 1 EPHA2 3 fluorescent resonance energy transfe Ivanov AA (2017) 1
MET 7 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
HIF1A 1 CCND2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 LATS2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
TERT 7 CCNE1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
RAF1 3 MAP2K3 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
MAP2K6 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
AKT1 1 NSD3 6 two hybrid Arroyo R (2015) 1
CCND2 2 AKT1 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
HGF 1 STK11 2 fluorescent resonance energy transfe Ivanov AA (2017) 1
MDM2 2 RASSF1 3 affinity chromatography technology, affinity chromatography technology, affinity chromatography technology Song MS (2008), Zhang H (2013), Zhang H (2013) 3
GLIS2 2 NF2 1 fluorescent resonance energy transfe Ivanov AA (2017) 1
BECN1 2 TERT 7 fluorescent resonance energy transfe Ivanov AA (2017) 1
CCND2 2 TEAD2 2 fluorescent resonance energy transfe Ivanov AA (2017) 1