ID/Version |
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Sequence description from provider |
RecName: Full=Glycogen synthase kinase-3 beta; Short=GSK-3 beta; EC=2.7.11.26 {ECO:0000250|UniProtKB:P49841};AltName: Full=Serine/threonine-protein kinase GSK3B; EC=2.7.11.1 {ECO:0000269|PubMed:22539723, ECO:0000269|PubMed:23542741 | ||||||||||||||
Provider | SWISS-PROT | ||||||||||||||
Sequence |
Polypeptide
420
aa
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Annotated genes and markers |
Follow the symbol links to get more information on the GO terms,
expression assays, orthologs, phenotypic alleles, and other information
for the genes or markers below.
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Sequence references in MGI |
J:63274
Hoeflich KP, et al., Requirement for glycogen synthase kinase-3beta in cell survival and NF-kappaB activation [see comments]. Nature. 2000 Jul 6;406(6791):86-90
J:98263 McManus EJ, et al., Role that phosphorylation of GSK3 plays in insulin and Wnt signalling defined by knockin analysis. EMBO J. 2005 Apr 20;24(8):1571-83 J:115106 Beaulieu JM, et al., An Akt/beta-arrestin 2/PP2A signaling complex mediates dopaminergic neurotransmission and behavior. Cell. 2005 Jul 29;122(2):261-73 J:121428 Garrido JJ, et al., GSK3 alpha and GSK3 beta are necessary for axon formation. FEBS Lett. 2007 Apr 17;581(8):1579-86 J:135659 Tanabe K, et al., Genetic deficiency of glycogen synthase kinase-3beta corrects diabetes in mouse models of insulin resistance. PLoS Biol. 2008 Feb;6(2):e37 J:147568 Mao Y, et al., Disrupted in schizophrenia 1 regulates neuronal progenitor proliferation via modulation of GSK3beta/beta-catenin signaling. Cell. 2009 Mar 20;136(6):1017-31 J:148434 Chen T, et al., Identification of zinc-finger BED domain-containing 3 (Zbed3) as a novel Axin-interacting protein that activates Wnt/beta-catenin signaling. J Biol Chem. 2009 Mar 13;284(11):6683-9 J:157250 Sahar S, et al., Regulation of BMAL1 protein stability and circadian function by GSK3beta-mediated phosphorylation. PLoS One. 2010;5(1):e8561 J:161722 Kurabayashi N, et al., DYRK1A and glycogen synthase kinase 3beta, a dual-kinase mechanism directing proteasomal degradation of CRY2 for circadian timekeeping. Mol Cell Biol. 2010 Apr;30(7):1757-68 J:170927 Wu X, et al., Skin stem cells orchestrate directional migration by regulating microtubule-ACF7 connections through GSK3beta. Cell. 2011 Feb 4;144(3):341-52 J:180612 Wakatsuki S, et al., ZNRF1 promotes Wallerian degeneration by degrading AKT to induce GSK3B-dependent CRMP2 phosphorylation. Nat Cell Biol. 2011 Dec;13(12):1415-23 J:183987 Lin SY, et al., GSK3-TIP60-ULK1 signaling pathway links growth factor deprivation to autophagy. Science. 2012 Apr 27;336(6080):477-81 J:196439 Chen BB, et al., A combinatorial F box protein directed pathway controls TRAF adaptor stability to regulate inflammation. Nat Immunol. 2013 May;14(5):470-9 J:198048 Kaasik K, et al., Glucose sensor O-GlcNAcylation coordinates with phosphorylation to regulate circadian clock. Cell Metab. 2013 Feb 5;17(2):291-302 J:201566 Maurer U, et al., Glycogen synthase kinase-3 regulates mitochondrial outer membrane permeabilization and apoptosis by destabilization of MCL-1. Mol Cell. 2006 Mar 17;21(6):749-60 J:242722 Ekim Ustunel B, et al., Control of diabetic hyperglycaemia and insulin resistance through TSC22D4. Nat Commun. 2016 Nov 09;7:13267 J:255973 Qie S, et al., Fbxo4-mediated degradation of Fxr1 suppresses tumorigenesis in head and neck squamous cell carcinoma. Nat Commun. 2017 Nov 16;8(1):1534 J:272534 Lu Y, et al., Cancer/testis antigen PIWIL2 suppresses circadian rhythms by regulating the stability and activity of BMAL1 and CLOCK. Oncotarget. 2017 Aug 15;8(33):54913-54924 J:273508 Besing RC, et al., GSK3 activity regulates rhythms in hippocampal clock gene expression and synaptic plasticity. Hippocampus. 2017 Aug;27(8):890-898 J:274568 Choi JH, et al., LMBR1L regulates lymphopoiesis through Wnt/beta-catenin signaling. Science. 2019 May 10;364(6440) J:292518 Huttlin EL, et al., A tissue-specific atlas of mouse protein phosphorylation and expression. Cell. 2010 Dec 23;143(7):1174-89 J:332980 Del'Guidice T, et al., FXR1P is a GSK3beta substrate regulating mood and emotion processing. Proc Natl Acad Sci U S A. 2015 Aug 18;112(33):E4610-9 J:333976 Brethour D, et al., A ZIP6-ZIP10 heteromer controls NCAM1 phosphorylation and integration into focal adhesion complexes during epithelial-to-mesenchymal transition. Sci Rep. 2017 Jan 18;7:40313 |
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO) |
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last database update 11/12/2024 MGI 6.24 |
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