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Summary Expression Phenotypes Gene Literature (18) GO Terms (8) Nucleotides (177) Proteins (68) Interactants (162) Wiki
XB-GENEPAGE-1015390

Papers associated with mcm10



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Claspin - checkpoint adaptor and DNA replication factor., Smits VAJ, Cabrera E, Freire R, Gillespie DA., FEBS J. January 1, 2019; 286 (3): 441-455.


The anti-parasitic agent suramin and several of its analogues are inhibitors of the DNA binding protein Mcm10., Paulson CN, John K, Baxley RM, Kurniawan F, Orellana K, Francis R, Sobeck A, Eichman BF, Chazin WJ, Aihara H, Georg GI, Hawkinson JE, Bielinsky AK., Open Biol. January 1, 2019; 9 (8): 190117.        


An intact Mcm10 coiled-coil interaction surface is important for origin melting, helicase assembly and the recruitment of Pol-α to Mcm2-7., Perez-Arnaiz P, Bruck I, Colbert MK, Kaplan DL., Nucleic Acids Res. July 7, 2017; 45 (12): 7261-7275.                


CUL-2LRR-1 and UBXN-3 drive replisome disassembly during DNA replication termination and mitosis., Sonneville R, Moreno SP, Knebel A, Johnson C, Hastie CJ, Gartner A, Gambus A, Labib K., Nat Cell Biol. May 1, 2017; 19 (5): 468-479.            


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.            


Mcm10 self-association is mediated by an N-terminal coiled-coil domain., Du W, Josephrajan A, Adhikary S, Bowles T, Bielinsky AK, Eichman BF., PLoS One. January 1, 2013; 8 (7): e70518.            


Solution NMR structure of the C-terminal DNA binding domain of Mcm10 reveals a conserved MCM motif., Robertson PD, Chagot B, Chazin WJ, Eichman BF., J Biol Chem. July 23, 2010; 285 (30): 22942-9.


Xenopus DNA2 is a helicase/nuclease that is found in complexes with replication proteins And-1/Ctf4 and Mcm10 and DSB response proteins Nbs1 and ATM., Wawrousek KE, Fortini BK, Polaczek P, Chen L, Liu Q, Dunphy WG, Campbell JL., Cell Cycle. March 15, 2010; 9 (6): 1156-66.


Tipin/Tim1/And1 protein complex promotes Pol alpha chromatin binding and sister chromatid cohesion., Errico A, Cosentino C, Rivera T, Losada A, Schwob E, Hunt T, Costanzo V., EMBO J. December 2, 2009; 28 (23): 3681-92.              


MCM10 mediates RECQ4 association with MCM2-7 helicase complex during DNA replication., Xu X, Rochette PJ, Feyissa EA, Su TV, Liu Y., EMBO J. October 7, 2009; 28 (19): 3005-14.


Structural basis for DNA binding by replication initiator Mcm10., Warren EM, Vaithiyalingam S, Haworth J, Greer B, Bielinsky AK, Chazin WJ, Eichman BF., Structure. December 10, 2008; 16 (12): 1892-901.


Domain architecture and biochemical characterization of vertebrate Mcm10., Robertson PD, Warren EM, Zhang H, Friedman DB, Lary JW, Cole JL, Tutter AV, Walter JC, Fanning E, Eichman BF., J Biol Chem. February 8, 2008; 283 (6): 3338-3348.


Mcm10 and And-1/CTF4 recruit DNA polymerase alpha to chromatin for initiation of DNA replication., Zhu W, Ukomadu C, Jha S, Senga T, Dhar SK, Wohlschlegel JA, Nutt LK, Kornbluth S, Dutta A., Genes Dev. September 15, 2007; 21 (18): 2288-99.


Localization of MCM2-7, Cdc45, and GINS to the site of DNA unwinding during eukaryotic DNA replication., Pacek M, Tutter AV, Kubota Y, Takisawa H, Walter JC., Mol Cell. February 17, 2006; 21 (4): 581-7.


Fission yeast Cdc23/Mcm10 functions after pre-replicative complex formation to promote Cdc45 chromatin binding., Gregan J, Lindner K, Brimage L, Franklin R, Namdar M, Hart EA, Aves SJ, Kearsey SE., Mol Biol Cell. September 1, 2003; 14 (9): 3876-87.


The Xenopus Xmus101 protein is required for the recruitment of Cdc45 to origins of DNA replication., Van Hatten RA, Tutter AV, Holway AH, Khederian AM, Walter JC, Michael WM., J Cell Biol. November 25, 2002; 159 (4): 541-7.          


Protein phosphatase 2A regulates binding of Cdc45 to the prereplication complex., Chou DM, Petersen P, Walter JC, Walter G., J Biol Chem. October 25, 2002; 277 (43): 40520-7.


Xenopus Mcm10 binds to origins of DNA replication after Mcm2-7 and stimulates origin binding of Cdc45., Wohlschlegel JA, Dhar SK, Prokhorova TA, Dutta A, Walter JC., Mol Cell. February 1, 2002; 9 (2): 233-40.

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