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ZNF587 and TRIM36
Number of citations of the paper that reports this interaction (PMID
25416956
)
0
Data Source:
BioGRID
(two hybrid)
ZNF587
TRIM36
Gene Name
zinc finger protein 587
tripartite motif containing 36
Image
No pdb structure
No pdb structure
Gene Ontology Annotations
Cellular Component
Nucleus
Acrosomal Vesicle
Cytoskeleton
Extracellular Vesicular Exosome
Molecular Function
DNA Binding
Metal Ion Binding
Ubiquitin-protein Transferase Activity
Zinc Ion Binding
Ligase Activity
Biological Process
Transcription, DNA-templated
Regulation Of Transcription, DNA-templated
Acrosome Reaction
Protein Ubiquitination
Regulation Of Cell Cycle
Pathways
Generic Transcription Pathway
Antigen processing: Ubiquitination & Proteasome degradation
Class I MHC mediated antigen processing & presentation
Adaptive Immune System
Drugs
Diseases
GWAS
Protein-Protein Interactions
43 interactors:
ADAMTSL4
CARD9
CCDC136
CEP44
CEP70
CSRNP1
FSD2
GOLGA2
GOPC
HMBOX1
KRT38
KRT40
KRTAP10-1
KRTAP10-3
KRTAP10-5
KRTAP10-7
KRTAP10-8
KRTAP10-9
KRTAP2-4
KRTAP5-9
MDFI
MEOX2
MID2
MTUS2
NOTCH2NL
PLSCR1
PNMA2
PRPF31
RUNDC3A
SMAD9
SPRY2
SSX2IP
STX11
TCF4
TMCC2
TNS2
TRAF1
TRIM36
TRIM41
TRIM54
TSGA10
ZBTB8A
ZNF417
10 interactors:
EIF4A2
GLRX3
GRB7
TRAF3IP3
UBC
UBE2D2
UBE2H
ZMAT2
ZNF417
ZNF587
Entrez ID
84914
55521
HPRD ID
15864
15554
Ensembl ID
ENSG00000198466
ENSG00000152503
Uniprot IDs
E7EP41
Q96SQ5
E9PBG3
E9PFI8
Q9NQ86
PDB IDs
Enriched GO Terms of Interacting Partners
?
Protein Polyubiquitination
Regulation Of Transcription From RNA Polymerase II Promoter In Response To Hypoxia
Protein K48-linked Ubiquitination
Cellular Macromolecule Catabolic Process
Regulation Of Transcription From RNA Polymerase II Promoter In Response To Stress
Regulation Of DNA-templated Transcription In Response To Stress
TRIF-dependent Toll-like Receptor Signaling Pathway
MyD88-independent Toll-like Receptor Signaling Pathway
Toll-like Receptor 3 Signaling Pathway
Toll-like Receptor 4 Signaling Pathway
Negative Regulation Of RNA-directed RNA Polymerase Activity
Cellular Response To Hypoxia
Ubiquitin-dependent Protein Catabolic Process
Cellular Response To Decreased Oxygen Levels
Modification-dependent Protein Catabolic Process
Toll-like Receptor Signaling Pathway
Cellular Response To Oxygen Levels
Proteolysis Involved In Cellular Protein Catabolic Process
Cellular Protein Catabolic Process
Protein Ubiquitination
Pattern Recognition Receptor Signaling Pathway
Protein Modification By Small Protein Conjugation
Innate Immune Response-activating Signal Transduction
Protein Catabolic Process
Activation Of Innate Immune Response
Epidermal Growth Factor Receptor Signaling Pathway
ERBB Signaling Pathway
Regulation Of Gene Expression
Positive Regulation Of Innate Immune Response
Catabolic Process
Regulation Of Innate Immune Response
Negative Regulation Of Cardiac Muscle Hypertrophy
Regulation Of Translation
Negative Regulation Of Muscle Hypertrophy
Viral Protein Processing
Response To Hypoxia
Negative Regulation Of Transferase Activity
Stress Granule Assembly
Regulation Of Nucleic Acid-templated Transcription
Regulation Of RNA Biosynthetic Process
Regulation Of RNA Metabolic Process
Notch Receptor Processing
Protein K11-linked Ubiquitination
Virion Assembly
Negative Regulation Of Biosynthetic Process
Nucleotide-binding Oligomerization Domain Containing Signaling Pathway
Nuclear-transcribed MRNA Poly(A) Tail Shortening
Cytokine-mediated Signaling Pathway
Glycogen Biosynthetic Process
Intracellular Transport Of Virus
Tagcloud
?
acsl
androgen
ar
auc
cancerous
captured
crp
css
eralpha
estrogen
favorable
fox
gleason
klf4
microdissection
naive
oct
oct1
powerful
predict
prostate
psa
separately
set
sets
sox2
stromal
validation
Tagcloud (Difference)
?
acsl
androgen
ar
auc
cancerous
captured
crp
css
eralpha
estrogen
favorable
fox
gleason
klf4
microdissection
naive
oct
oct1
powerful
predict
prostate
psa
separately
set
sets
sox2
stromal
validation
Tagcloud (Intersection)
?