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HUMAN:BMI1
Contents
Species (Taxon ID) | Homo sapiens (Human). (9606) | |
Gene Name(s) | BMI1 (synonyms: PCGF4, RNF51) | |
Protein Name(s) | Polycomb complex protein BMI-1
Polycomb group RING finger protein 4 RING finger protein 51 | |
External Links | ||
UniProt | P35226 | |
EMBL | L13689 AK313235 AL158211 CH471072 CH471072 CH471072 CH471072 BC011652 AH004292 | |
CCDS | CCDS7138.1 | |
PIR | I54339 | |
RefSeq | NP_001190991.1 NP_005171.4 | |
UniGene | Hs.380403 Hs.731287 | |
PDB | 2H0D 3RPG 4R8P | |
PDBsum | 2H0D 3RPG 4R8P | |
ProteinModelPortal | P35226 | |
SMR | P35226 | |
BioGrid | 107116 1529410 | |
DIP | DIP-41879N | |
IntAct | P35226 | |
MINT | MINT-158260 | |
STRING | 9606.ENSP00000365851 | |
PhosphoSite | P35226 | |
DMDM | 22258801 | |
MaxQB | P35226 | |
PaxDb | P35226 | |
PRIDE | P35226 | |
DNASU | 648 | |
Ensembl | ENST00000376663 | |
GeneID | 100532731 648 | |
KEGG | hsa:100532731 hsa:648 | |
UCSC | uc001irh.3 | |
CTD | 100532731 648 | |
GeneCards | GC10P022611 | |
HGNC | HGNC:1066 | |
HPA | CAB011120 HPA030472 | |
MIM | 164831 | |
neXtProt | NX_P35226 | |
PharmGKB | PA25376 | |
eggNOG | NOG304672 | |
GeneTree | ENSGT00550000074463 | |
HOGENOM | HOG000231945 | |
HOVERGEN | HBG052826 | |
InParanoid | P35226 | |
KO | K11459 | |
PhylomeDB | P35226 | |
TreeFam | TF324206 | |
Reactome | REACT_169436 | |
EvolutionaryTrace | P35226 | |
GeneWiki | BMI1 | |
NextBio | 2628 | |
PRO | PR:P35226 | |
Proteomes | UP000005640 | |
Bgee | P35226 | |
CleanEx | HS_BMI1 | |
ExpressionAtlas | P35226 | |
Genevestigator | P35226 | |
GO | GO:0005737 GO:0005654 GO:0005634 GO:0031519 GO:0035102 GO:0000151 GO:0071535 GO:0008270 GO:0016568 GO:0030097 GO:0000122 GO:0048146 GO:0051443 GO:0010468 GO:0007379 GO:0006351 | |
Gene3D | 3.30.40.10 | |
InterPro | IPR018957 IPR001841 IPR013083 IPR017907 | |
Pfam | PF00097 | |
SMART | SM00184 | |
PROSITE | PS00518 PS50089 |
Annotations
Qualifier | GO ID | GO term name | Reference | ECO ID | ECO term name | with/from | Aspect | Extension | Notes | Status |
---|---|---|---|---|---|---|---|---|---|---|
GO:0043526 |
neuroprotection |
ECO:0000315 |
P |
Figure 3. Loss of BM1 due to aging results in loss of neurons |
complete | |||||
part_of |
GO:0031519 |
PcG protein complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0036353 |
histone H2A-K119 monoubiquitination |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:1990841 |
promoter-specific chromatin binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0045814 |
negative regulation of gene expression, epigenetic |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0048146 |
positive regulation of fibroblast proliferation |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0010468 |
regulation of gene expression |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0071535 |
RING-like zinc finger domain binding |
ECO:0000353 |
physical interaction evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0051443 |
positive regulation of ubiquitin-protein transferase activity |
ECO:0000314 |
direct assay evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
part_of |
GO:0035102 |
PRC1 complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0035102 |
PRC1 complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0031519 |
PcG protein complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0030097 |
hemopoiesis |
ECO:0000270 |
expression pattern evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0008270 |
zinc ion binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
part_of |
GO:0005634 |
nucleus |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0005634 |
nucleus |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0000151 |
ubiquitin ligase complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0000122 |
negative regulation of transcription by RNA polymerase II |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:1990841 |
promoter-specific chromatin binding |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
MGI:MGI:88174 |
F |
Seeded From UniProt |
complete | ||
involved_in |
GO:0036353 |
histone H2A-K119 monoubiquitination |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000850589 |
P |
Seeded From UniProt |
complete | ||
part_of |
GO:0035102 |
PRC1 complex |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000850589 |
C |
Seeded From UniProt |
complete | ||
involved_in |
GO:0006342 |
chromatin silencing |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
FB:FBgn0265623 |
P |
Seeded From UniProt |
complete | ||
involved_in |
GO:0000122 |
negative regulation of transcription by RNA polymerase II |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
MGI:MGI:88174 |
P |
Seeded From UniProt |
complete | ||
part_of |
GO:0005634 |
nucleus |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0016604 |
nuclear body |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0005829 |
cytosol |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0007379 |
segment specification |
ECO:0000304 |
author statement supported by traceable reference used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0070317 |
negative regulation of G0 to G1 transition |
Reactome:R-HSA-8953750 |
ECO:0000304 |
author statement supported by traceable reference used in manual assertion |
P |
Seeded From UniProt |
complete | ||
part_of |
GO:0005654 |
nucleoplasm |
Reactome:R-HSA-8954082 |
ECO:0000304 |
author statement supported by traceable reference used in manual assertion |
|
C |
Seeded From UniProt |
complete | |
enables |
GO:0046872 |
metal ion binding |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
part_of |
GO:0005634 |
nucleus |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0005737 |
cytoplasm |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006325 |
chromatin organization |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
Notes
References
See Help:References for how to manage references in GONUTS.
- ↑ Abdouh, M et al. (2012) Bmi1 is down-regulated in the aging brain and displays antioxidant and protective activities in neurons. PLoS ONE 7 e31870 PubMed GONUTS page
- ↑ 2.0 2.1 Taherbhoy, AM et al. (2015) BMI1-RING1B is an autoinhibited RING E3 ubiquitin ligase. Nat Commun 6 7621 PubMed GONUTS page
- ↑ 3.0 3.1 Serra, RW et al. (2014) A KRAS-directed transcriptional silencing pathway that mediates the CpG island methylator phenotype. Elife 3 e02313 PubMed GONUTS page
- ↑ 4.0 4.1 Ruas, M et al. (2007) CDK4 and CDK6 delay senescence by kinase-dependent and p16INK4a-independent mechanisms. Mol. Cell. Biol. 27 4273-82 PubMed GONUTS page
- ↑ 5.0 5.1 5.2 5.3 Li, Z et al. (2006) Structure of a Bmi-1-Ring1B polycomb group ubiquitin ligase complex. J. Biol. Chem. 281 20643-9 PubMed GONUTS page
- ↑ 6.0 6.1 Maertens, GN et al. (2009) Several distinct polycomb complexes regulate and co-localize on the INK4a tumor suppressor locus. PLoS ONE 4 e6380 PubMed GONUTS page
- ↑ Levine, SS et al. (2002) The core of the polycomb repressive complex is compositionally and functionally conserved in flies and humans. Mol. Cell. Biol. 22 6070-8 PubMed GONUTS page
- ↑ 8.0 8.1 Vandamme, J et al. (2011) Interaction proteomics analysis of polycomb proteins defines distinct PRC1 complexes in mammalian cells. Mol. Cell Proteomics 10 M110.002642 PubMed GONUTS page
- ↑ MacGrogan, D et al. (2004) Structural integrity and expression of the L3MBTL gene in normal and malignant hematopoietic cells. Genes Chromosomes Cancer 41 203-13 PubMed GONUTS page
- ↑ Koga, H et al. (1999) A human homolog of Drosophila lethal(3)malignant brain tumor (l(3)mbt) protein associates with condensed mitotic chromosomes. Oncogene 18 3799-809 PubMed GONUTS page
- ↑ 11.0 11.1 11.2 11.3 11.4 Gaudet, P et al. (2011) Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics 12 449-62 PubMed GONUTS page
- ↑ Alkema, MJ et al. (1997) MPc2, a new murine homolog of the Drosophila polycomb protein is a member of the mouse polycomb transcriptional repressor complex. J. Mol. Biol. 273 993-1003 PubMed GONUTS page
- ↑ Alkema, MJ et al. (1995) Transformation of axial skeleton due to overexpression of bmi-1 in transgenic mice. Nature 374 724-7 PubMed GONUTS page
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