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CDK9 — SUPT5H
Pathways - manually collected, often from reviews:
Protein-Protein interactions - manually collected from original source literature:
Studies that report less than 10 interactions are marked with *
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IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, enzymatic study)
Larochelle et al., Nature structural & molecular biology 2012*
-
IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, pull down)
Larochelle et al., Nature structural & molecular biology 2012*
-
IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, enzymatic study)
Larochelle et al., Nature structural & molecular biology 2006
-
IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, enzymatic study)
Michels et al., EMBO J 2004*
-
IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, enzymatic study)
Garber et al., Mol Cell Biol 2000*
-
IRef Biogrid Interaction:
CDK9
—
SUPT5H
(direct interaction, pull down)
Garber et al., Mol Cell Biol 2000*
-
MIPS CORUM RNA pol II containing coactivator complex Tat-SF:
RNA pol II containing coactivator complex Tat-SF complex (CDK9-HTATSF1-NCL-POLR2A-SUPT5H)
Parada et al., EMBO J 1999
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MIPS CORUM Transcription elongation factor complex (SUPT5H, CDK9, CCNT1):
Transcription elongation factor complex (SUPT5H, CDK9, CCNT1) complex (CCNT1-CDK9-SUPT5H)
Kim et al., J Biol Chem 2001*
-
IRef Corum Interaction:
Complex of SUPT5H-CCNT1-CDK9
(association, far western blotting)
Kim et al., J Biol Chem 2001*
-
IRef Corum Interaction:
Complex of 11 proteins
(association, molecular sieving)
Parada et al., EMBO J 1999
-
IRef Dip Interaction:
SUPT5H
—
CDK9
(direct interaction, protein kinase assay)
Larochelle et al., Nature structural & molecular biology 2006
-
IRef Hprd Interaction:
Complex of SUPT5H-CCNT1-CDK9-CCNT1-SUPT5H-CDK9-CDK9-SUPT5H-CCNT1
(in vivo)
Kim et al., J Biol Chem 2001*
-
IRef Hprd Interaction:
CDK9
—
SUPT5H
(in vitro)
Kim et al., J Biol Chem 2001*, Lavoie et al., J Mol Biol 2001*
-
IRef Hprd Interaction:
Complex of 17 proteins
(in vivo)
Yik et al., Mol Cell 2003*
Text-mined interactions from Literome
Ping et al., J Biol Chem 2001
:
DSIF and NELF interact with RNA polymerase II elongation complex and HIV-1 Tat stimulates
P-TEFb mediated phosphorylation of RNA polymerase II and
DSIF during transcription elongation
Lavoie et al., J Mol Biol 2001
:
Cdk9 dependent phosphorylation of Rpb1 and
hSpt5 followed by Pin1 interaction might thus contribute to the regulation of transcription, pre-mRNA maturation, and the dynamics of these proteins in interphase and mitosis