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PSME3 [cytosol]
Stable Identifier
R-HSA-68816
Type
Protein [EntityWithAccessionedSequence]
Species
Homo sapiens
Compartment
cytosol
Synonyms
Proteasome activator complex subunit 3, Proteasome activator 28-gamma subunit, PA28gamma, PA28g, Activator of multicatalytic protease subunit 3, 11S regulator complex gamma subunit, REG-gamma, Ki nuclear autoantigen
Locations in the PathwayBrowser
Expand all
Cell Cycle (Homo sapiens)
Cell Cycle Checkpoints (Homo sapiens)
G1/S DNA Damage Checkpoints (Homo sapiens)
p53-Dependent G1/S DNA damage checkpoint (Homo sapiens)
p53-Dependent G1 DNA Damage Response (Homo sapiens)
Stabilization of p53 (Homo sapiens)
Autodegradation of the E3 ubiquitin ligase COP1 (Homo sapiens)
Proteasome mediated degradation of COP1 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
p53-Independent G1/S DNA damage checkpoint (Homo sapiens)
p53-Independent DNA Damage Response (Homo sapiens)
Ubiquitin Mediated Degradation of Phosphorylated Cdc25A (Homo sapiens)
Proteolytic degradation of ubiquitinated-Cdc25A (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
G2/M Checkpoints (Homo sapiens)
GTSE1 facilitates proteasome-mediated degradation of TP53 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Cell Cycle, Mitotic (Homo sapiens)
M Phase (Homo sapiens)
Mitotic Metaphase and Anaphase (Homo sapiens)
Mitotic Anaphase (Homo sapiens)
Separation of Sister Chromatids (Homo sapiens)
Degradation of multiubiquitinated Securin (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Mitotic G2-G2/M phases (Homo sapiens)
G2/M Transition (Homo sapiens)
FBXL7 down-regulates AURKA during mitotic entry and in early mitosis (Homo sapiens)
Proteasome degrades AURKA ubiquitinated by SCF-FBXL7 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Proteasome-mediated degradation of PolyUb-FBXL7 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
The role of GTSE1 in G2/M progression after G2 checkpoint (Homo sapiens)
GTSE1 facilitates proteasome-mediated degradation of TP53 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Regulation of mitotic cell cycle (Homo sapiens)
APC/C-mediated degradation of cell cycle proteins (Homo sapiens)
APC/C:Cdh1 mediated degradation of Cdc20 and other APC/C:Cdh1 targeted proteins in late mitosis/early G1 (Homo sapiens)
Degradation of multiubiquitinated cell cycle proteins (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Activation of APC/C and APC/C:Cdc20 mediated degradation of mitotic proteins (Homo sapiens)
APC/C:Cdc20 mediated degradation of mitotic proteins (Homo sapiens)
APC/C:Cdc20 mediated degradation of Securin (Homo sapiens)
Degradation of multiubiquitinated Securin (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
APC:Cdc20 mediated degradation of cell cycle proteins prior to satisfation of the cell cycle checkpoint (Homo sapiens)
Cdc20:Phospho-APC/C mediated degradation of Cyclin A (Homo sapiens)
Degradation multiubiquitinated Cyclin A (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Regulation of APC/C activators between G1/S and early anaphase (Homo sapiens)
SCF-beta-TrCP mediated degradation of Emi1 (Homo sapiens)
SCF-mediated degradation of Emi1 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
S Phase (Homo sapiens)
Synthesis of DNA (Homo sapiens)
Switching of origins to a post-replicative state (Homo sapiens)
CDK-mediated phosphorylation and removal of Cdc6 (Homo sapiens)
Ubiquitinated Cdc6 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Orc1 removal from chromatin (Homo sapiens)
Ubiquitinated Orc1 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Ubiquitin-dependent degradation of Cyclin D (Homo sapiens)
Proteasome mediated degradation of Cyclin D1 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Cellular responses to stimuli (Homo sapiens)
Cellular responses to stress (Homo sapiens)
Cellular response to chemical stress (Homo sapiens)
KEAP1-NFE2L2 pathway (Homo sapiens)
26S proteasome degrades Ub-NFE2L2 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ub UBXN7 is degraded by the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Cellular response to hypoxia (Homo sapiens)
Oxygen-dependent proline hydroxylation of Hypoxia-inducible Factor Alpha (Homo sapiens)
Proteasome proteolyzes ub-HIF-alpha (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
DNA Replication (Homo sapiens)
Synthesis of DNA (Homo sapiens)
Switching of origins to a post-replicative state (Homo sapiens)
CDK-mediated phosphorylation and removal of Cdc6 (Homo sapiens)
Ubiquitinated Cdc6 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Orc1 removal from chromatin (Homo sapiens)
Ubiquitinated Orc1 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Developmental Biology (Homo sapiens)
Nervous system development (Homo sapiens)
Axon guidance (Homo sapiens)
Signaling by ROBO receptors (Homo sapiens)
Regulation of expression of SLITs and ROBOs (Homo sapiens)
Proteasome degrades ubiquitinated ROBO3.1 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Disease (Homo sapiens)
Diseases of signal transduction by growth factor receptors and second messengers (Homo sapiens)
Hh mutants abrogate ligand secretion (Homo sapiens)
Hh mutants are degraded by ERAD (Homo sapiens)
processing defective Hh variants are degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Disorders of transmembrane transporters (Homo sapiens)
ABC transporter disorders (Homo sapiens)
Defective CFTR causes cystic fibrosis (Homo sapiens)
CFTR F508del is degraded by the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Infectious disease (Homo sapiens)
Viral Infection Pathways (Homo sapiens)
HIV Infection (Homo sapiens)
Host Interactions of HIV factors (Homo sapiens)
Vif-mediated degradation of APOBEC3G (Homo sapiens)
Proteosome-mediated degradation of APOBEC3G (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Vpu mediated degradation of CD4 (Homo sapiens)
Degradation of ubiquitinated CD4 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Gene expression (Transcription) (Homo sapiens)
RNA Polymerase II Transcription (Homo sapiens)
Generic Transcription Pathway (Homo sapiens)
Transcriptional regulation by RUNX1 (Homo sapiens)
RUNX1 regulates transcription of genes involved in differentiation of HSCs (Homo sapiens)
26S proteasome degrades TP73 polyubiquitinated by ITCH (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Transcriptional regulation by RUNX2 (Homo sapiens)
Regulation of RUNX2 expression and activity (Homo sapiens)
Proteasome degrades PolyUb-RUNX2 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Proteasome degrades polyubiquitinated RUNX2 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Immune System (Homo sapiens)
Adaptive Immune System (Homo sapiens)
Class I MHC mediated antigen processing & presentation (Homo sapiens)
Antigen processing-Cross presentation (Homo sapiens)
Cross-presentation of soluble exogenous antigens (endosomes) (Homo sapiens)
Proteasomal clevage of exogenous antigen (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ER-Phagosome pathway (Homo sapiens)
Proteasomal cleavage of substrate (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Antigen processing: Ubiquitination & Proteasome degradation (Homo sapiens)
Proteasomal cleavage of substrate (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Signaling by the B Cell Receptor (BCR) (Homo sapiens)
Downstream signaling events of B Cell Receptor (BCR) (Homo sapiens)
Activation of NF-kappaB in B cells (Homo sapiens)
Ubiquitinated IkB is degraded (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
TCR signaling (Homo sapiens)
Downstream TCR signaling (Homo sapiens)
26S proteasome processes K48PolyUb-K21,22-p-S32,36-IkBA:NF-kB complex to form NF-kB complex (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Cytokine Signaling in Immune system (Homo sapiens)
Signaling by Interleukins (Homo sapiens)
Interleukin-1 family signaling (Homo sapiens)
Interleukin-1 signaling (Homo sapiens)
Ubiquitinated and phosphorylated IKBA binds to and is degraded by the proteasome complex (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
TNFR2 non-canonical NF-kB pathway (Homo sapiens)
26Sproteasome degrades K48polyUb-NIK (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
NIK-->noncanonical NF-kB signaling (Homo sapiens)
26S proteasome processes p-7S-p100:RELB to form p52:RELB (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Protesomal degradation of K48polyUb-TRAF3 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Innate Immune System (Homo sapiens)
C-type lectin receptors (CLRs) (Homo sapiens)
CLEC7A (Dectin-1) signaling (Homo sapiens)
26S proteasome processes K48PolyUb-K21,22-p-S32,36-IkBA:NF-kB complex to form NF-kB complex (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Dectin-1 mediated noncanonical NF-kB signaling (Homo sapiens)
26S proteasome processes p-7S-p100:RELB to form p52:RELB (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Fc epsilon receptor (FCERI) signaling (Homo sapiens)
FCERI mediated NF-kB activation (Homo sapiens)
26S proteasome processes K48PolyUb-K21,22-p-S32,36-IkBA:NF-kB complex to form NF-kB complex (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Metabolism (Homo sapiens)
Metabolism of amino acids and derivatives (Homo sapiens)
Metabolism of polyamines (Homo sapiens)
Regulation of ornithine decarboxylase (ODC) (Homo sapiens)
26S proteosome degrades ODC holoenzyme complex (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Metabolism of RNA (Homo sapiens)
Regulation of mRNA stability by proteins that bind AU-rich elements (Homo sapiens)
AUF1 (hnRNP D0) binds and destabilizes mRNA (Homo sapiens)
AUF1:mRNA complex is destroyed (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Metabolism of proteins (Homo sapiens)
Post-translational protein modification (Homo sapiens)
Deubiquitination (Homo sapiens)
UCH proteinases (Homo sapiens)
ADRM1 binds 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ADRM1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ADRM1:26S proteaseome binds UCHL5 (Homo sapiens)
ADRM1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ADRM1:26S proteasome:UCHL5 [cytosol] (Homo sapiens)
ADRM1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Ub-specific processing proteases (Homo sapiens)
ADRM1:26S proteaseome binds USP14 (Homo sapiens)
ADRM1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ADRM1:26S proteasome:USP14 [cytosol] (Homo sapiens)
ADRM1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Neddylation (Homo sapiens)
26S proteasome degrades HIFalpha (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
26S proteasome degrades Ub-NFE2L2 (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
26S- and NUB1-mediated degradation of NEDD8, UBD and their conjugates (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
NEDD8,UBD:NUB1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
NEDD8 and UBD bind NUB1 and the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
NEDD8,UBD:NUB1:26S proteasome [cytosol] (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
ub UBXN7 is degraded by the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Signal Transduction (Homo sapiens)
Intracellular signaling by second messengers (Homo sapiens)
PIP3 activates AKT signaling (Homo sapiens)
PTEN Regulation (Homo sapiens)
Regulation of PTEN stability and activity (Homo sapiens)
Proteasome degrades polyubiquitinated PTEN (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
MAPK family signaling cascades (Homo sapiens)
MAPK1/MAPK3 signaling (Homo sapiens)
RAF/MAP kinase cascade (Homo sapiens)
Regulation of RAS by GAPs (Homo sapiens)
NF1 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
MAPK6/MAPK4 signaling (Homo sapiens)
MAPK6 is degraded by the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Signaling by Hedgehog (Homo sapiens)
Hedgehog 'off' state (Homo sapiens)
Degradation of GLI1 by the proteasome (Homo sapiens)
GLI1 is degraded by the proteasome after ubiquitination by ITCH (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
GLI1 is degraded by the proteasome after ubiquitination by beta-TrCP (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Degradation of GLI2 by the proteasome (Homo sapiens)
GLI2 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
GLI3 is processed to GLI3R by the proteasome (Homo sapiens)
GLI3 is partially degraded by the proteasome to yield the GLI3 repressor (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Hedgehog 'on' state (Homo sapiens)
ub-GLI is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Hedgehog ligand biogenesis (Homo sapiens)
Hh C-terminal fragments are degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Signaling by WNT (Homo sapiens)
Beta-catenin independent WNT signaling (Homo sapiens)
PCP/CE pathway (Homo sapiens)
Asymmetric localization of PCP proteins (Homo sapiens)
PRICKLE1 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Degradation of beta-catenin by the destruction complex (Homo sapiens)
Degradation of ubiquitinated beta catenin by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
TCF dependent signaling in response to WNT (Homo sapiens)
Degradation of AXIN (Homo sapiens)
Ub-RibC-AXIN is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Ubiquitinated AXIN is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Degradation of DVL (Homo sapiens)
Ubiquitinated DVL is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Ubiquitinated DVL1 is degraded by the proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
Transport of small molecules (Homo sapiens)
ABC-family proteins mediated transport (Homo sapiens)
misfolded CFTR is degraded by the 26S proteasome (Homo sapiens)
26S proteasome [cytosol] (Homo sapiens)
PSME3 [cytosol] (Homo sapiens)
External Reference Information
External Reference
UniProt:P61289 PSME3
Gene Names
PSME3
Chain
initiator methionine:1, chain:2-254
Reference Genes
BioGPS Gene:10197 PSME3
COSMIC (genes):PSME3 PSME3
CTD Gene:10197 PSME3
dbSNP Gene:10197 PSME3
ENSEMBL:ENSG00000131467 PSME3
ENSEMBL:ENSG00000131467.12 PSME3
HGNC:9570 PSME3
KEGG Gene (Homo sapiens):10197 PSME3
Monarch:10197 PSME3
NCBI Gene:10197 PSME3
OMIM:605129 PSME3
UCSC:P61289 PSME3
Reference Transcript
RefSeq:NM_005789.3 PSME3
RefSeq:NM_176863.2 PSME3
Other Identifiers
10197
11729131_a_at
11729132_a_at
11756207_s_at
16834486
200987_PM_x_at
200987_x_at
200988_PM_s_at
200988_s_at
209852_PM_x_at
209852_x_at
209853_PM_s_at
209853_s_at
3722156
3722157
3722158
3722159
3722160
3722162
3722163
3722164
3722165
3722166
3722167
3722168
3722170
3722171
3722172
3722173
3722174
3722175
3722177
3722178
3722179
3722180
3722181
3722183
3722184
3722185
3722186
3722187
39796_at
8007397
A_23_P164141
A_24_P344307
GE61895
GO:0000278
GO:0000502
GO:0002039
GO:0005515
GO:0005634
GO:0005654
GO:0005737
GO:0005829
GO:0006915
GO:0007049
GO:0008537
GO:0010950
GO:0012501
GO:0016020
GO:0023052
GO:0030163
GO:0042802
GO:0043226
GO:0061133
GO:0061136
GO:0097371
GO:0098772
GO:2000045
GO:2001237
HMNXSV003037526
Hs.152978.0.A1_3p_a_at
ILMN_1800975
ILMN_2346573
PH_hs_0009198
TC17000538.hg
U11292_at
g12655138_3p_a_at
g12803696_3p_a_at
g5031996_3p_a_at
Participates
as a component of
26S proteasome [cytosol] (Homo sapiens)
Other forms of this molecule
PSME3 [nucleoplasm]
Inferred To
psme-3 [cytosol]
(Caenorhabditis elegans)
psmE3 [cytosol]
(Dictyostelium discoideum)
Ghost homologue of PSME3 [cytosol]
(Canis familiaris)
Ghost homologue of PSME3 [cytosol]
(Saccharomyces cerevisiae)
Ghost homologue of PSME3 [cytosol]
(Schizosaccharomyces pombe)
PSME3 [cytosol]
(Bos taurus)
PSME3 [cytosol]
(Danio rerio)
PSME3 [cytosol]
(Plasmodium falciparum)
PSME3 [cytosol]
(Sus scrofa)
REG [cytosol]
(Drosophila melanogaster)
Psme3 [cytosol]
(Mus musculus)
Psme3 [cytosol]
(Rattus norvegicus)
Cross References
RefSeq
NP_005780.2
,
NP_789839.1
OpenTargets
ENSG00000131467
HPA
ENSG00000131467-PSME3
GeneCards
P61289
Ensembl
ENST00000441946
,
ENSP00000466794
,
ENSP00000409487
,
ENSG00000131467
,
ENST00000293362
,
ENSP00000293362
,
ENST00000590720
PRO
P61289
Pharos - Targets
P61289
PDB
7YQC
,
7YQD
Interactors (14)
Accession
#Entities
Entities
Confidence Score
Evidence (IntAct)
UniProt:Q96JC9 EAF1
1
EAF1 [nucleoplasm]
(R-HSA-8932787)
0.841
9
UniProt:Q9BXC9 BBS2
1
BBS2 [cytosol]
(R-HSA-5617637)
0.781
7
UniProt:Q96CJ1 EAF2
1
EAF2 [nucleoplasm]
(R-HSA-8932790)
0.621
3
UniProt:Q00987 MDM2
11
PolyUb-MDM2 [nucleoplasm]
(R-HSA-6782472)
monoSUMO1-K182-MDM2 [nucleoplasm]
(R-HSA-3000408)
MDM2 [plasma membrane]
(R-HSA-416843)
MDM2 [endocytic vesicle membrane]
(R-HSA-416849)
p-5S,T-MDM2 [nucleoplasm]
(R-HSA-6804954)
PolyUb,p-S166,S188-MDM2 [nucleoplasm]
(R-HSA-6795669)
p-S166,S188,T218-MDM2 [nucleoplasm]
(R-HSA-6792862)
MDM2 [nucleoplasm]
(R-HSA-69486)
MDM2 [cytosol]
(R-HSA-198644)
p-S166,S188-MDM2 [cytosol]
(R-HSA-198638)
p-S166,S188-MDM2 [nucleoplasm]
(R-HSA-6793669)
0.612
8
UniProt:Q9Y6Q9 NCOA3
2
NCOA3 [nucleoplasm]
(R-HSA-442488)
p-S857 NCOA3 [nucleoplasm]
(R-HSA-5687005)
0.602
5
UniProt:Q9HCE7 SMURF1
2
SMURF1 [cytosol]
(R-HSA-975972)
SMURF1 [nucleoplasm]
(R-HSA-3004548)
0.593
5
UniProt:P04637 TP53
20
Unfolded TP53 [cytosol]
(R-HSA-6813797)
TP53 [cytosol]
(R-HSA-8869337)
PolyUb-TP53 [nucleoplasm]
(R-HSA-6782509)
polySUMO2,3-K386-TP53 [nucleoplasm]
(R-HSA-2997661)
TP53 F341C [nucleoplasm]
(R-HSA-9726318)
TP53 G334V [nucleoplasm]
(R-HSA-9726126)
TP53 L330H [nucleoplasm]
(R-HSA-9726124)
TP53 A347T [nucleoplasm]
(R-HSA-9726339)
TP53 R337C [nucleoplasm]
(R-HSA-9726118)
TP53 L344P [nucleoplasm]
(R-HSA-9726075)
TP53 L344R [nucleoplasm]
(R-HSA-9726073)
TP53 R337H [nucleoplasm]
(R-HSA-9726169)
TP53 R337P [nucleoplasm]
(R-HSA-9726168)
TP53 L330P [nucleoplasm]
(R-HSA-9726136)
TP53 L348S [nucleoplasm]
(R-HSA-9726366)
TP53 R337L [nucleoplasm]
(R-HSA-9726163)
TP53 K351E [nucleoplasm]
(R-HSA-9726258)
TP53 F338I [nucleoplasm]
(R-HSA-9726358)
TP53 R342P [nucleoplasm]
(R-HSA-9726101)
TP53 L330R [nucleoplasm]
(R-HSA-9726133)
0.576
7
UniProt:P42677 RPS27
2
RPS27 [nucleoplasm]
(R-HSA-6791190)
RPS27 [cytosol]
(R-HSA-72361)
0.556
3
UniProt:P30305 CDC25B
3
p-S50,T69,S160,S321,S470-CDC25B [cytosol]
(R-HSA-8863644)
CDC25B [cytosol]
(R-HSA-157412)
CDC25B [nucleoplasm]
(R-HSA-69734)
0.556
3
UniProt:Q99757 TXN2
2
TXN2 [mitochondrial matrix]
(R-HSA-3323048)
2xHC-TXN2 [mitochondrial matrix]
(R-HSA-3323059)
0.556
3
UniProt:Q9NRD5 PICK1
2
PICK1 [plasma membrane]
(R-HSA-416989)
PICK1 [endocytic vesicle membrane]
(R-HSA-417017)
0.556
3
UniProt:P0DTC9 N
13
SUMO1-K62-ADPr-p-11S,2T-metR95,177-N [plasma membrane]
(R-COV-9729325)
SUMO1-K62-ADPr-p-11S,2T-metR95,177-N [nucleolus]
(R-COV-9729339)
N [plasma membrane]
(R-COV-9694356)
SUMO1-K62,ADPr-,p-11S,2T,met-R95,177,Ac-K375-N [cytosol]
(R-COV-9756489)
N [cytosol]
(R-COV-9694300)
p-S188,206-N [cytosol]
(R-COV-9729324)
p-8S-N [cytosol]
(R-COV-9729335)
p-8S,2T-N [cytosol]
(R-COV-9729277)
p-11S,2T-N [cytosol]
(R-COV-9729264)
p-11S,2T-metR95,177-N [cytosol]
(R-COV-9729308)
ADPr-p-11S,2T-metR95,177-N [cytosol]
(R-COV-9729275)
SUMO1-K62-ADPr-p-11S,2T-metR95,177-N [endoplasmic reticulum-Golgi intermediate compartment membrane]
(R-COV-9729341)
SUMO1-K62-ADPr-p-11S,2T-metR95,177-N [cytosol]
(R-COV-9729340)
0.544
3
UniProt:P19320 VCAM1
1
VCAM1 [plasma membrane]
(R-HSA-197834)
0.527
4
UniProt:Q05513 PRKCZ
5
pS, p-T410-PRKCZ [cytosol]
(R-HSA-9632824)
p-T410,T563-PRKCZ [cytosol]
(R-HSA-5218698)
PRKCZ [cell junction]
(R-HSA-2134483)
PRKCZ [cytosol]
(R-HSA-58218)
p-T410-PRKCZ [cytosol]
(R-HSA-437181)
0.527
3
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