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Summary Expression Phenotypes Gene Literature (18) GO Terms (10) Nucleotides (226) Proteins (52) Interactants (76) Wiki
XB-GENEPAGE-1003827

Papers associated with gins2



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The structural mechanism of dimeric DONSON in replicative helicase activation., Cvetkovic MA, Passaretti P, Butryn A, Reynolds-Winczura A, Kingsley G, Skagia A, Fernandez-Cuesta C, Poovathumkadavil D, George R, Chauhan AS, Jhujh SS, Stewart GS, Gambus A, Costa A., Mol Cell. November 16, 2023; 83 (22): 4017-4031.e9.                              


Novel role of DONSON in CMG helicase assembly during vertebrate DNA replication initiation., Hashimoto Y, Sadano K, Miyata N, Ito H, Tanaka H., EMBO J. September 4, 2023; 42 (17): e114131.                          


The p97 segregase cofactor Ubxn7 facilitates replisome disassembly during S-phase., Tarcan Z, Poovathumkadavil D, Skagia A, Gambus A., J Biol Chem. August 1, 2022; 298 (8): 102234.                          


Embryonic expression of GINS members in the development of the mammalian nervous system., Jia W, Hsieh HY, Kidoya H, Takakura N., Neurochem Int. October 1, 2019; 129 104465.


Mitotic replisome disassembly depends on TRAIP ubiquitin ligase activity., Priego Moreno S, Jones RM, Poovathumkadavil D, Scaramuzza S, Gambus A., Life Sci Alliance. April 12, 2019; 2 (2):                       


Mitotic entry drives replisome disassembly at stalled replication forks., Hashimoto Y, Tanaka H., Biochem Biophys Res Commun. November 17, 2018; 506 (1): 108-113.      


Reversal of DDK-Mediated MCM Phosphorylation by Rif1-PP1 Regulates Replication Initiation and Replisome Stability Independently of ATR/Chk1., Alver RC, Chadha GS, Gillespie PJ, Blow JJ., Cell Rep. March 7, 2017; 18 (10): 2508-2520.                


Xenopus Mcm10 is a CDK-substrate required for replication fork stability., Chadha GS, Gambus A, Gillespie PJ, Blow JJ., Cell Cycle. August 17, 2016; 15 (16): 2183-2195.            


Structure of human Cdc45 and implications for CMG helicase function., Simon AC, Sannino V, Costanzo V, Pellegrini L., Nat Commun. May 18, 2016; 7 11638.                


Xenopus Cdc7 executes its essential function early in S phase and is counteracted by checkpoint-regulated protein phosphatase 1., Poh WT, Chadha GS, Gillespie PJ, Kaldis P, Blow JJ., Open Biol. January 8, 2014; 4 (1): 130138.                


RAD51- and MRE11-dependent reassembly of uncoupled CMG helicase complex at collapsed replication forks., Hashimoto Y, Puddu F, Costanzo V., Nat Struct Mol Biol. December 4, 2011; 19 (1): 17-24.          


Drosophila Ctf4 is essential for efficient DNA replication and normal cell cycle progression., Gosnell JA, Christensen TW., BMC Mol Biol. April 6, 2011; 12 13.            


Structure and function of the GINS complex, a key component of the eukaryotic replisome., MacNeill SA., Biochem J. January 15, 2010; 425 (3): 489-500.


The human GINS complex associates with Cdc45 and MCM and is essential for DNA replication., Aparicio T, Guillou E, Coloma J, Montoya G, Méndez J., Nucleic Acids Res. April 1, 2009; 37 (7): 2087-95.              


Psf2 plays important roles in normal eye development in Xenopus laevis., Walter BE, Perry KJ, Fukui L, Malloch EL, Wever J, Henry JJ., Mol Vis. May 19, 2008; 14 906-21.                  


A combined computational and experimental study on the structure-regulation relationships of putative mammalian DNA replication initiator GINS., Hayashi R, Arauchi T, Tategu M, Goto Y, Yoshida K., Genomics Proteomics Bioinformatics. August 1, 2006; 4 (3): 156-64.    


Embryonic expression of pre-initiation DNA replication factors in Xenopus laevis., Walter BE, Henry JJ., Gene Expr Patterns. November 1, 2004; 5 (1): 81-9.                                


A novel ring-like complex of Xenopus proteins essential for the initiation of DNA replication., Kubota Y, Takase Y, Komori Y, Hashimoto Y, Arata T, Kamimura Y, Araki H, Takisawa H., Genes Dev. May 1, 2003; 17 (9): 1141-52.

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