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Summary Expression Phenotypes Gene Literature (9) GO Terms (8) Nucleotides (184) Proteins (63) Interactants (47) Wiki
XB--961371

Papers associated with mcm8



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MCM8-9 complex promotes resection of double-strand break ends by MRE11-RAD50-NBS1 complex., Lee KY, Im JS, Shibata E, Park J, Handa N, Kowalczykowski SC, Dutta A., Nat Commun. July 28, 2015; 6 7744.              


The dimeric Mcm8-9 complex of Xenopus laevis likely has a conserved function for resistance to DNA damage., Kanemaki MT., Cell Cycle. May 1, 2013; 12 (9): 1338-9.  


Mcm8 and Mcm9 form a dimeric complex in Xenopus laevis egg extract that is not essential for DNA replication initiation., Gambus A, Blow JJ., Cell Cycle. April 15, 2013; 12 (8): 1225-32.                


The MCM8-MCM9 complex promotes RAD51 recruitment at DNA damage sites to facilitate homologous recombination., Park J, Long DT, Lee KY, Abbas T, Shibata E, Negishi M, Luo Y, Schimenti JC, Gambus A, Walter JC, Dutta A., Mol Cell Biol. April 1, 2013; 33 (8): 1632-44.


Role of replication protein A as sensor in activation of the S-phase checkpoint in Xenopus egg extracts., Recolin B, Van der Laan S, Maiorano D., Nucleic Acids Res. April 1, 2012; 40 (8): 3431-42.        


Differential requirements for MCM proteins in DNA replication in Drosophila S2 cells., Crevel G, Hashimoto R, Vass S, Sherkow J, Yamaguchi M, Heck MM, Cotterill S., PLoS One. September 5, 2007; 2 (9): e833.              


Comparative genomics on MCM8 orthologous genes reveals the transcriptional regulation by transcription factor E2F., Hayashi R, Goto Y, Haga A, Kobayashi D, Ikeda R, Yoshida K., Gene. February 15, 2006; 367 126-34.


Identification of full genes and proteins of MCM9, a novel, vertebrate-specific member of the MCM2-8 protein family., Lutzmann M, Maiorano D, Méchali M., Gene. December 5, 2005; 362 51-6.


MCM8 is an MCM2-7-related protein that functions as a DNA helicase during replication elongation and not initiation., Maiorano D, Cuvier O, Danis E, Méchali M., Cell. February 11, 2005; 120 (3): 315-28.

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