Details for: CEP131
Associated with
Other Information
Genular Protein ID: 3878037861
Symbol: CP131_HUMAN
Name: Centrosomal protein of 131 kDa
UniProtKB Accession Codes:
Database IDs:
Citations:
PubMed ID: 10470851
Title: Prediction of the coding sequences of unidentified human genes. XIV. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro.
PubMed ID: 10470851
PubMed ID: 16625196
Title: DNA sequence of human chromosome 17 and analysis of rearrangement in the human lineage.
PubMed ID: 16625196
DOI: 10.1038/nature04689
PubMed ID: 15489334
Title: The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
PubMed ID: 15489334
DOI: 10.1101/gr.2596504
PubMed ID: 14654843
Title: Proteomic characterization of the human centrosome by protein correlation profiling.
PubMed ID: 14654843
DOI: 10.1038/nature02166
PubMed ID: 17081983
Title: Global, in vivo, and site-specific phosphorylation dynamics in signaling networks.
PubMed ID: 17081983
PubMed ID: 16964243
Title: A probability-based approach for high-throughput protein phosphorylation analysis and site localization.
PubMed ID: 16964243
DOI: 10.1038/nbt1240
PubMed ID: 17954613
Title: Cep164, a novel centriole appendage protein required for primary cilium formation.
PubMed ID: 17954613
PubMed ID: 18669648
Title: A quantitative atlas of mitotic phosphorylation.
PubMed ID: 18669648
PubMed ID: 19369195
Title: Large-scale proteomics analysis of the human kinome.
PubMed ID: 19369195
PubMed ID: 19690332
Title: Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions.
PubMed ID: 19690332
PubMed ID: 20068231
Title: Quantitative phosphoproteomics reveals widespread full phosphorylation site occupancy during mitosis.
PubMed ID: 20068231
PubMed ID: 21406692
Title: System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation.
PubMed ID: 21406692
PubMed ID: 23186163
Title: Toward a comprehensive characterization of a human cancer cell phosphoproteome.
PubMed ID: 23186163
DOI: 10.1021/pr300630k
PubMed ID: 24089205
Title: Autophagy promotes primary ciliogenesis by removing OFD1 from centriolar satellites.
PubMed ID: 24089205
DOI: 10.1038/nature12606
PubMed ID: 22797915
Title: The centriolar satellite protein Cep131 is important for genome stability.
PubMed ID: 22797915
DOI: 10.1242/jcs.104059
PubMed ID: 24185901
PubMed ID: 24121310
Title: A new cellular stress response that triggers centriolar satellite reorganization and ciliogenesis.
PubMed ID: 24121310
PubMed ID: 23137637
Title: Regulation of CEP131 gene expression by SP1.
PubMed ID: 23137637
PubMed ID: 24275569
Title: An enzyme assisted RP-RPLC approach for in-depth analysis of human liver phosphoproteome.
PubMed ID: 24275569
PubMed ID: 24550735
Title: The centriolar satellite protein AZI1 interacts with BBS4 and regulates ciliary trafficking of the BBSome.
PubMed ID: 24550735
PubMed ID: 26616734
Title: p38- and MK2-dependent signalling promotes stress-induced centriolar satellite remodelling via 14-3-3-dependent sequestration of CEP131/AZI1.
PubMed ID: 26616734
DOI: 10.1038/ncomms10075
PubMed ID: 26297806
Title: Centriolar satellites assemble centrosomal microcephaly proteins to recruit CDK2 and promote centriole duplication.
PubMed ID: 26297806
DOI: 10.7554/elife.07519
PubMed ID: 27224062
Title: SDCCAG8 interacts with RAB effector proteins RABEP2 and ERC1 and is required for Hedgehog Signaling.
PubMed ID: 27224062
PubMed ID: 30804208
Title: Polo-like kinase 4 maintains centriolar satellite integrity by phosphorylation of centrosomal protein 131 (CEP131).
PubMed ID: 30804208
PubMed ID: 30538148
Title: Human nuclear RNAi-defective 2 (NRDE2) is an essential RNA splicing factor.
PubMed ID: 30538148
PubMed ID: 31789463
Title: hVFL3/CCDC61 is a component of mother centriole subdistal appendages required for centrosome cohesion and positioning.
PubMed ID: 31789463
Sequence Information:
- Length: 1083
- Mass: 122149
- Checksum: 31C8CA426569CCAC
- Sequence:
MKGTRAIGSV PERSPAGVDL SLTGLPPPVS RRPGSAATTK PIVRSVSVVT GSEQKRKVLE ATGPGGSQAI NNLRRSNSTT QVSQPRSGSP RPTEPTDFLM LFEGSPSGKK RPASLSTAPS EKGATWNVLD DQPRGFTLPS NARSSSALDS PAGPRRKECT VALAPNFTAN NRSNKGAVGN CVTTMVHNRY TPSERAPPLK SSNQTAPSLN NIIKAATCEG SESSGFGKLP KNVSSATHSA RNNTGGSTGL PRRKEVTEEE AERFIHQVNQ ATVTIQRWYR HQVQRRGAGA ARLEHLLQAK REEQRQRSGE GTLLDLHQQK EAARRKAREE KARQARRAAI QELQQKRALR AQKASTAERG PPENPRETRV PGMRQPAQEL SPTPGGTAHQ ALKANNTGGG LPAAGPGDRC LPTSDSSPEP QQPPEDRTQD VLAQDAAGDN LEMMAPSRGS AKSRGPLEEL LHTLQLLEKE PDVLPRPRTH HRGRYAWASE VTTEDDASSL TADNLEKFGK LSAFPEPPED GTLLSEAKLQ SIMSFLDEME KSGQDQLDSQ QEGWVPEAGP GPLELGSEVS TSVMRLKLEV EEKKQAMLLL QRALAQQRDL TARRVKETEK ALSRQLQRQR EHYEATIQRH LAFIDQLIED KKVLSEKCEA VVAELKQEDQ RCTERVAQAQ AQHELEIKKL KELMSATEKA RREKWISEKT KKIKEVTVRG LEPEIQKLIA RHKQEVRRLK SLHEAELLQS DERASQRCLR QAEELREQLE REKEALGQQE RERARQRFQQ HLEQEQWALQ QQRQRLYSEV AEERERLGQQ AARQRAELEE LRQQLEESSS ALTRALRAEF EKGREEQERR HQMELNTLKQ QLELERQAWE AGRTRKEEAW LLNREQELRE EIRKGRDKEI ELVIHRLEAD MALAKEESEK AAESRIKRLR DKYEAELSEL EQSERKLQER CSELKGQLGE AEGENLRLQG LVRQKERALE DAQAVNEQLS SERSNLAQVI RQEFEDRLAA SEEETRQAKA ELATLQARQQ LELEEVHRRV KTALARKEEA VSSLRTQHEA AVKRADHLEE LLEQHRRPTP STK
Genular Protein ID: 4066358826
Symbol: I3L2J8_HUMAN
Name: N/A
UniProtKB Accession Codes:
Database IDs:
Citations:
PubMed ID: 17081983
Title: Global, in vivo, and site-specific phosphorylation dynamics in signaling networks.
PubMed ID: 17081983
PubMed ID: 16964243
Title: A probability-based approach for high-throughput protein phosphorylation analysis and site localization.
PubMed ID: 16964243
DOI: 10.1038/nbt1240
PubMed ID: 16625196
Title: DNA sequence of human chromosome 17 and analysis of rearrangement in the human lineage.
PubMed ID: 16625196
DOI: 10.1038/nature04689
PubMed ID: 18669648
Title: A quantitative atlas of mitotic phosphorylation.
PubMed ID: 18669648
PubMed ID: 19369195
Title: Large-scale proteomics analysis of the human kinome.
PubMed ID: 19369195
PubMed ID: 19690332
Title: Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions.
PubMed ID: 19690332
PubMed ID: 20068231
Title: Quantitative phosphoproteomics reveals widespread full phosphorylation site occupancy during mitosis.
PubMed ID: 20068231
PubMed ID: 21406692
Title: System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation.
PubMed ID: 21406692
PubMed ID: 23186163
Title: Toward a comprehensive characterization of a human cancer cell phosphoproteome.
PubMed ID: 23186163
PubMed ID: 24275569
Title: An enzyme assisted RP-RPLC approach for in-depth analysis of human liver phosphoproteome.
PubMed ID: 24275569
Sequence Information:
- Length: 1047
- Mass: 117698
- Checksum: C59EEC60480BE9C2
- Sequence:
MKGTRAIGSV PERSPAGVDL SLTGLPPPVS RRPGSAATTK PIVRSVSVVT GSEQKRKVLE ATGPGGSQAI NNLRRSNSTT QVSQPRSGSP RPTEPTDFLM LFEGSPSGKK RPASLSTAPS EKGATWNVLD DQPRGFTLPS NARSSSALDS PAGPRRKECT VALAPNFTAN NRSNKGAVGN CVTTMVHNRY TPSERAPPLK SSNQTAPSLN NIIKAATCEG SESSGFGKLP KNVSSATHSA RNNTGGSTGL PRRKEVTEEE AERFIHQVNQ ATVTIQRWYR HQVQRRGAGA ARLEHLLQAK REEQRQRSGE GTLLDLHQQK EAARRKAREE KARQARRAAI QELQQKRALR AQKASTAERG PPENPRETRV PGMRQPAQEL SPTPGGTAHQ ALKANNTGGG LPAAGPGDRC LPTSDSSPEP QQPPEDRTQD VLAQDAAGDN LEMMAPSRGS AKSRGPLEEL LHTLQLLEKE PDVLPRPRTH HRGRYAWASE VTTEDDASSL TADNLEKFGK LSAFPEPPED GTLLSEAKLQ SIMSFLDEME KSGQDQLDSQ QEGWVPEAGP GPLELGSEVS TSVMRLKLEV EEKKQAMLLL QRALAQQRDL TARRVKETEK ALSRQLQRQR EHYEATIQRH LAFIDQLIED KKVLSEKCEA VVAELKQEDQ RCTERVAQAQ AQHELEIKKL KELMSATEKA RREKWISEKT KKIKEVTVRG LEPEIQKLIA RHKQEVRRLK SLHEAELLQS DERASQRCLR QAEELREQLE REKEALGQQE RERARQRQRA ELEELRQQLE ESSSALTRAL RAEFEKGREE QERRHQMELN TLKQQLELER QAWEAGRTRK EEAWLLNREQ ELREEIRKGR DKEIELVIHR LEADMALAKE ESEKAAESRI KRLRDKYEAE LSELEQSERK LQERCSELKG QLGEAEGENL RLQGLVRQKE RALEDAQAVN EQLSSERSNL AQVIRQEFED RLAASEEETR QAKAELATLQ ARQQLELEEV HRRVKTALAR KEEAVSSLRT QHEAAVKRAD HLEELLEQHR RPTPSTK
Database document:
This is a preview of the gene's schema. Only a few entries are kept for 'singleCellExpressions,' 'mRNAExpressions,' and other large data arrays for visualization purposes. You can zoom in with the mouse wheel for a closer view, and the text will adjust automatically if necessary. For the full schema, download it here.