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HUMAN:SOSB1
Contents
Species (Taxon ID) | Homo sapiens (Human). (9606) | |
Gene Name(s) | NABP2 (synonyms: OBFC2B, SSB1) | |
Protein Name(s) | SOSS complex subunit B1
Nucleic acid-binding protein 2 Oligonucleotide/oligosaccharide-binding fold-containing protein 2B Sensor of single-strand DNA complex subunit B1 Sensor of ssDNA subunit B1 SOSS-B1 Single-stranded DNA-binding protein 1 hSSB1 | |
External Links | ||
UniProt | Q9BQ15 | |
EMBL | AY203942 CH471054 AC073896 BC001079 BC006171 | |
CCDS | CCDS8911.1 | |
RefSeq | NP_076973.1 XP_005269205.1 XP_005269206.1 | |
UniGene | Hs.240170 | |
PDB | 4OWT 4OWW 4OWX 5D8E 5D8F | |
PDBsum | 4OWT 4OWW 4OWX 5D8E 5D8F | |
DisProt | DP00864 | |
ProteinModelPortal | Q9BQ15 | |
SMR | Q9BQ15 | |
BioGrid | 122500 | |
IntAct | Q9BQ15 | |
STRING | 9606.ENSP00000267023 | |
iPTMnet | Q9BQ15 | |
PhosphoSitePlus | Q9BQ15 | |
BioMuta | NABP2 | |
DMDM | 74761196 | |
EPD | Q9BQ15 | |
MaxQB | Q9BQ15 | |
PaxDb | Q9BQ15 | |
PeptideAtlas | Q9BQ15 | |
PRIDE | Q9BQ15 | |
DNASU | 79035 | |
Ensembl | ENST00000267023 ENST00000341463 ENST00000380198 | |
GeneID | 79035 | |
KEGG | hsa:79035 | |
UCSC | uc001ski.4 | |
CTD | 79035 | |
DisGeNET | 79035 | |
GeneCards | NABP2 | |
HGNC | HGNC:28412 | |
HPA | HPA044615 HPA057213 | |
MIM | 612104 | |
neXtProt | NX_Q9BQ15 | |
OpenTargets | ENSG00000139579 | |
PharmGKB | PA143485567 | |
eggNOG | KOG3416 ENOG4111MBP | |
GeneTree | ENSGT00390000001913 | |
HOGENOM | HOG000006622 | |
InParanoid | Q9BQ15 | |
OMA | NPEYNTQ | |
OrthoDB | EOG091G0YHH | |
PhylomeDB | Q9BQ15 | |
TreeFam | TF313902 | |
Reactome | [www.reactome.org/content/detail/R-HSA-6807505 R-HSA-6807505] | |
GenomeRNAi | 79035 | |
PRO | PR:Q9BQ15 | |
Proteomes | UP000005640 | |
Bgee | ENSG00000139579 | |
CleanEx | HS_OBFC2B | |
ExpressionAtlas | Q9BQ15 | |
Genevisible | Q9BQ15 | |
GO | GO:0005829 GO:0000784 GO:0005654 GO:0005634 GO:0070876 GO:0019899 GO:0098505 GO:0003697 GO:0006974 GO:0006281 GO:0000724 GO:0070200 GO:0007093 GO:1904355 GO:0010212 GO:0042795 | |
InterPro | IPR012340 IPR004365 | |
Pfam | PF01336 | |
SUPFAM | SSF50249 |
Annotations
Qualifier | GO ID | GO term name | Reference | ECO ID | ECO term name | with/from | Aspect | Extension | Notes | Status |
---|---|---|---|---|---|---|---|---|---|---|
NOT|involved_in |
GO:0051972 |
regulation of telomerase activity |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0070182 |
DNA polymerase binding |
ECO:0000353 |
physical interaction evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
enables |
GO:0098505 |
G-rich strand telomeric DNA binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006281 |
DNA repair |
ECO:0000250 |
sequence similarity evidence used in manual assertion |
P |
happens_during:(GO:0000084) |
Seeded From UniProt |
complete | ||
involved_in |
GO:0070200 |
establishment of protein localization to telomere |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
transports_or_maintains_localization_of:(UniProtKB:O14746) |
Seeded From UniProt |
complete | ||
part_of |
GO:0000784 |
nuclear chromosome, telomeric region |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
exists_during:(GO:0000084) |
Seeded From UniProt |
complete | ||
involved_in |
GO:1904355 |
positive regulation of telomere capping |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
NOT|enables |
GO:0061730 |
C-rich strand telomeric DNA binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
GO:0071168 |
protein localization to chromatin |
ECO:0000314 |
P |
In figure 1, hSSB1 localizes to chromatin following oxidative stress. |
complete | |||||
part_of |
GO:0070876 |
SOSS complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0070876 |
SOSS complex |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:0010212 |
response to ionizing radiation |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0010212 |
response to ionizing radiation |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0007093 |
mitotic cell cycle checkpoint |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006974 |
cellular response to DNA damage stimulus |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006974 |
cellular response to DNA damage stimulus |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006281 |
DNA repair |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006281 |
DNA repair |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
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:0005634 |
nucleus |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
enables |
GO:0003697 |
single-stranded DNA binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
enables |
GO:0003697 |
single-stranded DNA binding |
ECO:0000314 |
direct assay evidence used in manual assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0000724 |
double-strand break repair via homologous recombination |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
part_of |
GO:0070876 |
SOSS complex |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000331761 |
C |
Seeded From UniProt |
complete | ||
involved_in |
GO:0010212 |
response to ionizing radiation |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000331760 |
P |
Seeded From UniProt |
complete | ||
involved_in |
GO:0007093 |
mitotic cell cycle checkpoint |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000331760 |
P |
Seeded From UniProt |
complete | ||
enables |
GO:0003677 |
DNA binding |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
MGI:MGI:1923258 |
F |
Seeded From UniProt |
complete | ||
part_of |
GO:0000784 |
nuclear chromosome, telomeric region |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
MGI:MGI:1917167 |
C |
Seeded From UniProt |
complete | ||
involved_in |
GO:0000724 |
double-strand break repair via homologous recombination |
ECO:0000318 |
biological aspect of ancestor evidence used in manual assertion |
PANTHER:PTN000331760 |
P |
Seeded From UniProt |
complete | ||
part_of |
GO:0005829 |
cytosol |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
part_of |
GO:0005654 |
nucleoplasm |
ECO:0000314 |
direct assay evidence used in manual assertion |
C |
Seeded From UniProt |
complete | |||
involved_in |
GO:1904355 |
positive regulation of telomere capping |
ECO:0000265 |
sequence orthology evidence used in automatic assertion |
UniProtKB:Q8R2Y9 |
P |
Seeded From UniProt |
complete | ||
involved_in |
GO:0006281 |
DNA repair |
ECO:0000265 |
sequence orthology evidence used in automatic assertion |
UniProtKB:Q8R2Y9 |
P |
Seeded From UniProt |
complete | ||
part_of |
GO:0000784 |
nuclear chromosome, telomeric region |
ECO:0000265 |
sequence orthology evidence used in automatic assertion |
UniProtKB:Q8R2Y9 |
C |
Seeded From UniProt |
complete | ||
enables |
GO:0003676 |
nucleic acid binding |
ECO:0000256 |
match to sequence model evidence used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0042795 |
snRNA transcription by RNA polymerase II |
Reactome:R-HSA-6807505 |
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-6814885 |
ECO:0000304 |
author statement supported by traceable reference used in manual assertion |
|
C |
Seeded From UniProt |
complete | |
enables |
GO:0003677 |
DNA binding |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006281 |
DNA repair |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006974 |
cellular response to DNA damage stimulus |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
part_of |
GO:0005634 |
nucleus |
ECO:0000322 |
imported manually asserted information used in automatic assertion |
C |
Seeded From UniProt |
complete | |||
Notes
References
See Help:References for how to manage references in GONUTS.
- ↑ 1.0 1.1 1.2 1.3 1.4 1.5 1.6 Pandita, RK et al. (2015) Single-strand DNA-binding protein SSB1 facilitates TERT recruitment to telomeres and maintains telomere G-overhangs. Cancer Res. 75 858-69 PubMed GONUTS page
- ↑ Paquet, N et al. (2015) hSSB1 (NABP2/ OBFC2B) is required for the repair of 8-oxo-guanine by the hOGG1-mediated base excision repair pathway. Nucleic Acids Res. 43 8817-29 PubMed GONUTS page
- ↑ 3.0 3.1 3.2 3.3 3.4 Richard, DJ et al. (2008) Single-stranded DNA-binding protein hSSB1 is critical for genomic stability. Nature 453 677-81 PubMed GONUTS page
- ↑ 4.0 4.1 4.2 4.3 4.4 4.5 4.6 Huang, J et al. (2009) SOSS complexes participate in the maintenance of genomic stability. Mol. Cell 35 384-93 PubMed GONUTS page
- ↑ 5.0 5.1 Li, Y et al. (2009) HSSB1 and hSSB2 form similar multiprotein complexes that participate in DNA damage response. J. Biol. Chem. 284 23525-31 PubMed GONUTS page
- ↑ 6.0 6.1 6.2 6.3 6.4 6.5 Gaudet, P et al. (2011) Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics 12 449-62 PubMed GONUTS page
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