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TRIM63 and TNNI1
Number of citations of the paper that reports this interaction (PMID
18157088
)
41
Data Source:
BioGRID
(two hybrid)
TRIM63
TNNI1
Gene Name
tripartite motif containing 63, E3 ubiquitin protein ligase
troponin I type 1 (skeletal, slow)
Image
No pdb structure
Gene Ontology Annotations
Cellular Component
Nucleus
Cytoplasm
Microtubule
Z Disc
M Band
Cytosol
Troponin Complex
Molecular Function
Ubiquitin-protein Transferase Activity
Signal Transducer Activity
Protein Binding
Zinc Ion Binding
Ligase Activity
Titin Binding
Actin Binding
Metal Ion Binding
Biological Process
Muscle Contraction
Signal Transduction
Regulation Of Gene Expression
Skeletal Muscle Atrophy
Response To Electrical Stimulus Involved In Regulation Of Muscle Adaptation
Protein Ubiquitination
Proteasome-mediated Ubiquitin-dependent Protein Catabolic Process
Response To Interleukin-1
Cellular Response To Dexamethasone Stimulus
Regulation Of Striated Muscle Contraction
Muscle Filament Sliding
Ventricular Cardiac Muscle Tissue Morphogenesis
Pathways
Antigen processing: Ubiquitination & Proteasome degradation
Class I MHC mediated antigen processing & presentation
Adaptive Immune System
Striated Muscle Contraction
Drugs
Diseases
GWAS
Protein-Protein Interactions
87 interactors:
ACTA1
AK1
AKR7A2
ALDOA
ANKRD1
APP
ATP5B
ATXN3
ATXN3L
BAP1
CKB
CKM
DCAF6
DES
EEF1G
EHHADH
EIF3E
ENO3
ESPL1
FHL2
FLNC
GFM1
GMEB1
HIBADH
JOSD1
LMCD1
MRPL19
MRPL41
MYBPC1
MYBPC3
MYL2
MYOT
MYOZ1
NDUFA1
NEB
NEBL
NOMO1
NRAP
OTUB1
OTUB2
PDHB
PDK4
PIAS1
PIAS2
PIAS3
PKM
PSMD4
PYGM
SENP2
SENP3
SQSTM1
SRF
STAM
SUMO2
TCAP
TNNC1
TNNI1
TNNI2
TNNI3
TNNT1
TNNT3
TRIM54
TRIM55
TTN
UBC
UBE2D1
UBE2D2
UBE2D3
UBE2I
UBE2J1
UBE2U
UCHL1
UCHL3
UCHL5
UQCRC1
USP13
USP15
USP2
USP21
USP28
USP33
USP4
USP5
USP7
USP8
UXT
YOD1
11 interactors:
ACTA1
CCDC85B
EIF3I
MDFI
PKD2L1
PNMA1
TNNC1
TNNT1
TNNT2
TRIM55
TRIM63
Entrez ID
84676
7135
HPRD ID
05843
01842
Ensembl ID
ENSG00000158022
ENSG00000159173
Uniprot IDs
B4DN95
Q969Q1
P19237
PDB IDs
2D8U
3DDT
Enriched GO Terms of Interacting Partners
?
Protein Modification By Small Protein Removal
Muscle Filament Sliding
Actin-myosin Filament Sliding
Protein Deubiquitination
Actin-mediated Cell Contraction
Ubiquitin-dependent Protein Catabolic Process
Modification-dependent Protein Catabolic Process
Proteolysis Involved In Cellular Protein Catabolic Process
Cellular Protein Catabolic Process
Actin Filament-based Movement
Proteasome-mediated Ubiquitin-dependent Protein Catabolic Process
Protein Catabolic Process
Proteasomal Protein Catabolic Process
Cellular Macromolecule Catabolic Process
Protein K48-linked Deubiquitination
Proteolysis
Muscle Contraction
Regulation Of Proteasomal Protein Catabolic Process
Catabolic Process
Muscle System Process
Regulation Of Protein Catabolic Process
Actin Filament-based Process
Protein K63-linked Deubiquitination
Striated Muscle Cell Development
Striated Muscle Contraction
Muscle Cell Development
Muscle Structure Development
Myofibril Assembly
Cellular Protein Modification Process
Cellular Protein Metabolic Process
Regulation Of Proteolysis
Cardiac Muscle Tissue Morphogenesis
Striated Muscle Cell Differentiation
Muscle Tissue Morphogenesis
Cardiac Muscle Tissue Development
Muscle Organ Morphogenesis
Actomyosin Structure Organization
Protein Sumoylation
Protein Metabolic Process
Striated Muscle Tissue Development
Muscle Cell Differentiation
Muscle Tissue Development
Regulation Of Muscle Contraction
Protein Modification By Small Protein Conjugation
Muscle Organ Development
Heart Morphogenesis
Regulation Of Cellular Protein Metabolic Process
Cardiac Myofibril Assembly
Muscle Fiber Development
Monoubiquitinated Protein Deubiquitination
Actin-myosin Filament Sliding
Muscle Filament Sliding
Actin-mediated Cell Contraction
Actin Filament-based Movement
Muscle Contraction
Muscle System Process
Negative Regulation Of ATPase Activity
Skeletal Muscle Adaptation
Regulation Of Muscle Contraction
Skeletal Muscle Contraction
Actin Filament-based Process
Regulation Of ATPase Activity
Musculoskeletal Movement
Ventricular Cardiac Muscle Tissue Morphogenesis
Muscle Organ Development
Ventricular Cardiac Muscle Tissue Development
Cardiac Muscle Tissue Morphogenesis
Striated Muscle Tissue Development
Muscle Tissue Morphogenesis
Response To Metal Ion
Muscle Tissue Development
Muscle Organ Morphogenesis
Cardiac Ventricle Morphogenesis
Regulation Of Muscle Filament Sliding Speed
Myofibril Assembly
Striated Muscle Contraction
Skeletal Muscle Fiber Adaptation
Detection Of Chemical Stimulus Involved In Sensory Perception Of Sour Taste
Regulation Of Systemic Arterial Blood Pressure By Ischemic Conditions
Cardiac Ventricle Development
Response To Inorganic Substance
Actomyosin Structure Organization
Muscle Structure Development
Regulation Of Muscle Filament Sliding
Diaphragm Contraction
Response To Electrical Stimulus Involved In Regulation Of Muscle Adaptation
Cardiac Chamber Development
Sensory Perception Of Sour Taste
Involuntary Skeletal Muscle Contraction
Striated Muscle Cell Development
Skeletal Muscle Atrophy
Muscle Cell Development
Slow-twitch Skeletal Muscle Fiber Contraction
Skeletal Muscle Thin Filament Assembly
Striated Muscle Atrophy
Cardiac Muscle Tissue Development
Movement Of Cell Or Subcellular Component
Cellular Response To Acidic PH
Muscle Atrophy
Atrial Cardiac Muscle Tissue Morphogenesis
Tagcloud
?
benzylic
bioactivation
clues
covalent
danger
dapk1
hapten
hepatotoxicity
il22
inflammasome
marks
methide
nevirapine
nlrp3
nvp
obligate
oh
oxidized
presumably
quinone
ra2
rash
rashes
reflecting
s100a7
s100a7a
sulfate
travels
Tagcloud (Difference)
?
benzylic
bioactivation
clues
covalent
danger
dapk1
hapten
hepatotoxicity
il22
inflammasome
marks
methide
nevirapine
nlrp3
nvp
obligate
oh
oxidized
presumably
quinone
ra2
rash
rashes
reflecting
s100a7
s100a7a
sulfate
travels
Tagcloud (Intersection)
?