Cyclin-dependent kinase 2
Definition:
References:
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[1]. Jon H Chung, et al. Cdk2 is required for p53-independent G2/M checkpoint control. PLoS Genet. 2010 Feb 26;6(2):e1000863. [Content Brief]
[2]. L De Boer, et al. Cyclin A/cdk2 coordinates centrosomal and nuclear mitotic events. Oncogene. 2008 Jul 17;27(31):4261-8. [Content Brief]
[3]. M Okuda, et al. Nucleophosmin/B23 is a target of CDK2/cyclin E in centrosome duplication. Cell. 2000 Sep 29;103(1):127-40. [Content Brief]
[4]. Nick R Brown, et al. Cyclin B and cyclin A confer different substrate recognition properties on CDK2. Cell Cycle. 2007 Jun 1;6(11):1350-9. [Content Brief]
[5]. M G Luciani, et al. The C-terminal regulatory domain of p53 contains a functional docking site for cyclin A. J Mol Biol. 2000 Jul 14;300(3):503-18. [Content Brief]
[6]. J Zhao, et al. NPAT links cyclin E-Cdk2 to the regulation of replication-dependent histone gene transcription. Genes Dev. 2000 Sep 15;14(18):2283-97. [Content Brief]
[7]. Denise A McGrath, et al. Structural basis of divergent cyclin-dependent kinase activation by Spy1/RINGO proteins. EMBO J. 2017 Aug 1;36(15):2251-2262. [Content Brief]
[8]. Nicole L Batenburg, et al. ATM and CDK2 control chromatin remodeler CSB to inhibit RIF1 in DSB repair pathway choice. Nat Commun. 2017 Dec 4;8(1):1921. [Content Brief]
[9]. Shuai Chen, et al. Cyclin-dependent kinases regulate epigenetic gene silencing through phosphorylation of EZH2. Nat Cell Biol. 2010 Nov;12(11):1108-14. [Content Brief]
[10]. Xiaodong Huang, et al. Deubiquitinase USP37 is activated by CDK2 to antagonize APC(CDH1) and promote S phase entry. Mol Cell. 2011 May 20;42(4):511-23. [Content Brief]
[11]. Fumiko Esashi, et al. CDK-dependent phosphorylation of BRCA2 as a regulatory mechanism for recombinational repair. Nature. 2005 Mar 31;434(7033):598-604. [Content Brief]
[12]. Annie Fiset, et al. Compartmentalized CDK2 is connected with SHP-1 and β-catenin and regulates insulin internalization. Cell Signal. 2011 May;23(5):911-9. [Content Brief]
[13]. M Emilie Terret, et al. DOC1R: a MAP kinase substrate that control microtubule organization of metaphase II mouse oocytes. Development. 2003 Nov;130(21):5169-77. [Content Brief]
[14]. Per Hydbring, et al. Phosphorylation by Cdk2 is required for Myc to repress Ras-induced senescence in cotransformation. Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):58-63. [Content Brief]
[15]. Irina Neganova, et al. An important role for CDK2 in G1 to S checkpoint activation and DNA damage response in human embryonic stem cells. Stem Cells. 2011 Apr;29(4):651-9. [Content Brief]
[16]. T Ma, et al. Cell cycle-regulated phosphorylation of p220(NPAT) by cyclin E/Cdk2 in Cajal bodies promotes histone gene transcription. Genes Dev. 2000 Sep 15;14(18):2298-313. [Content Brief]
[17]. Sachin Kumar, et al. Cdk2 nitrosylation and loss of mitochondrial potential mediate NO-dependent biphasic effect on HL-60 cell cycle. Free Radic Biol Med. 2010 Mar 15;48(6):851-61. [Content Brief]
[18]. S Garrett, et al. Reciprocal activation by cyclin-dependent kinases 2 and 7 is directed by substrate specificity determinants outside the T loop. Mol Cell Biol. 2001 Jan;21(1):88-99. [Content Brief]
[19]. J W Harbour, et al. Cdk phosphorylation triggers sequential intramolecular interactions that progressively block Rb functions as cells move through G1. Cell. 1999 Sep 17;98(6):859-69. [Content Brief]
[20]. Omar Flores, et al. Nuclear targeting of cyclin-dependent kinase 2 reveals essential roles of cyclin-dependent kinase 2 localization and cyclin E in vitamin D-mediated growth inhibition. Endocrinology. 2010 Mar;151(3):896-908. [Content Brief]