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Summary Expression Phenotypes Gene Literature (34) GO Terms (13) Nucleotides (268) Proteins (59) Interactants (316) Wiki
XB--985664

Papers associated with mcm5



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Overlapping action of T3 and T4 during Xenopus laevis development., Tribondeau A, Du Pasquier D, Benchouaia M, Blugeon C, Buisine N, Sachs LM., Front Endocrinol (Lausanne). January 1, 2024; 15 1360188.      


Structure of CRL2Lrr1, the E3 ubiquitin ligase that promotes DNA replication termination in vertebrates., Zhou H, Zaher MS, Walter JC, Brown A., Nucleic Acids Res. December 16, 2021; 49 (22): 13194-13206.          


Monoubiquitination by the human Fanconi anemia core complex clamps FANCI:FANCD2 on DNA in filamentous arrays., Tan W, van Twest S, Leis A, Bythell-Douglas R, Murphy VJ, Sharp M, Parker MW, Crismani W, Deans AJ., Elife. March 13, 2020; 9               


Opposite T3 Response of ACTG1-FOS Subnetwork Differentiate Tailfin Fate in Xenopus Tadpole and Post-hatching Axolotl., Kerdivel G, Blugeon C, Fund C, Rigolet M, Sachs LM, Buisine N., Front Endocrinol (Lausanne). January 25, 2019; 10 194.              


The Lhx1-Ldb1 complex interacts with Furry to regulate microRNA expression during pronephric kidney development., Espiritu EB, Crunk AE, Bais A, Hochbaum D, Cervino AS, Phua YL, Butterworth MB, Goto T, Ho J, Hukriede NA, Cirio MC., Sci Rep. October 30, 2018; 8 (1): 16029.                                      


Replication Fork Reversal during DNA Interstrand Crosslink Repair Requires CMG Unloading., Amunugama R, Willcox S, Wu RA, Abdullah UB, El-Sagheer AH, Brown T, McHugh PJ, Griffith JD, Walter JC., Cell Rep. June 19, 2018; 23 (12): 3419-3428.        


Expression variation and covariation impair analog and enable binary signaling control., Kovary KM, Taylor B, Zhao ML, Teruel MN., Mol Syst Biol. May 14, 2018; 14 (5): e7997.                            


The High-Affinity Interaction between ORC and DNA that Is Required for Replication Licensing Is Inhibited by 2-Arylquinolin-4-Amines., Gardner NJ, Gillespie PJ, Carrington JT, Shanks EJ, McElroy SP, Haagensen EJ, Frearson JA, Woodland A, Blow JJ., Cell Chem Biol. August 17, 2017; 24 (8): 981-992.e4.                        


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.                


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.                


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.                


The centrosome and its duplication cycle., Fu J, Hagan IM, Glover DM., Cold Spring Harb Perspect Biol. February 2, 2015; 7 (2): a015800.


Protein phosphatase 2A and Cdc7 kinase regulate the DNA unwinding element-binding protein in replication initiation., Gao Y, Yao J, Poudel S, Romer E, Abu-Niaaj L, Leffak M., J Biol Chem. December 26, 2014; 289 (52): 35987-6000.


The role of Dbf4-dependent protein kinase in DNA polymerase ζ-dependent mutagenesis in Saccharomyces cerevisiae., Brandão LN, Ferguson R, Santoro I, Jinks-Robertson S, Sclafani RA., Genetics. August 1, 2014; 197 (4): 1111-22.


NCOA4 transcriptional coactivator inhibits activation of DNA replication origins., Bellelli R, Castellone MD, Guida T, Limongello R, Dathan NA, Merolla F, Cirafici AM, Affuso A, Masai H, Costanzo V, Grieco D, Fusco A, Santoro M, Carlomagno F., Mol Cell. July 3, 2014; 55 (1): 123-37.


Quantitative proteomics of Xenopus laevis embryos: expression kinetics of nearly 4000 proteins during early development., Sun L, Bertke MM, Champion MM, Zhu G, Huber PW, Dovichi NJ., Sci Rep. February 26, 2014; 4 4365.                              


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.                


Roles of histone chaperone CIA/Asf1 in nascent DNA elongation during nucleosome replication., Ishikawa K, Ohsumi T, Tada S, Natsume R, Kundu LR, Nozaki N, Senda T, Enomoto T, Horikoshi M, Seki M., Genes Cells. October 1, 2011; 16 (10): 1050-62.  


Cyclin E-dependent localization of MCM5 regulates centrosome duplication., Ferguson RL, Maller JL., J Cell Sci. October 1, 2008; 121 (Pt 19): 3224-32.


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.              


Gene expression and tissue distribution of cytoglobin and myoglobin in the Amphibia and Reptilia: possible compensation of myoglobin with cytoglobin in skeletal muscle cells of anurans that lack the myoglobin gene., Xi Y, Obara M, Ishida Y, Ikeda S, Yoshizato K., Gene. August 15, 2007; 398 (1-2): 94-102.            


Minichromosome maintenance protein 5 homologue in Caenorhabditis elegans plays essential role for postembryonic development., Wang X, Suh C, Zhu Z, Fan Q., Biochem Biophys Res Commun. August 10, 2007; 359 (4): 965-71.


Direct requirement for Xmus101 in ATR-mediated phosphorylation of Claspin bound Chk1 during checkpoint signaling., Yan S, Lindsay HD, Michael WM., J Cell Biol. April 24, 2006; 173 (2): 181-6.          


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.


The role of Cdc6 in ensuring complete genome licensing and S phase checkpoint activation., Oehlmann M, Score AJ, Blow JJ., J Cell Biol. April 26, 2004; 165 (2): 181-90.                  


XCDT1 is required for the assembly of pre-replicative complexes in Xenopus laevis., Maiorano D, Moreau J, Méchali M., Nature. April 6, 2000; 404 (6778): 622-5.


The roles of the MCM, ORC, and Cdc6 proteins in determining the replication competence of chromatin in quiescent cells., Madine MA, Swietlik M, Pelizon C, Romanowski P, Mills AD, Laskey RA., J Struct Biol. April 1, 2000; 129 (2-3): 198-210.


The RLF-M component of the replication licensing system forms complexes containing all six MCM/P1 polypeptides., Thömmes P, Kubota Y, Takisawa H, Blow JJ., EMBO J. June 2, 1997; 16 (11): 3312-9.


Human replication proteins hCdc21, hCdc46 and P1Mcm3 bind chromatin uniformly before S-phase and are displaced locally during DNA replication., Krude T, Musahl C, Laskey RA, Knippers R., J Cell Sci. February 1, 1996; 109 ( Pt 2) 309-18.


The nuclear envelope prevents reinitiation of replication by regulating the binding of MCM3 to chromatin in Xenopus egg extracts., Madine MA, Khoo CY, Mills AD, Musahl C, Laskey RA., Curr Biol. November 1, 1995; 5 (11): 1270-9.


The possible involvement of replication-related proteins with a DEAD-box-like motif in cell-free DNA replication of Xenopus eggs., Someya A, Shioda M., Biochem Biophys Res Commun. July 26, 1995; 212 (3): 1098-106.


MCM3 complex required for cell cycle regulation of DNA replication in vertebrate cells., Madine MA, Khoo CY, Mills AD, Laskey RA., Nature. June 1, 1995; 375 (6530): 421-4.


The association and involvement of some members of the P1 protein family in a cell-free DNA replication of Xenopus eggs., Someya A, Shioda M, Okuyama A., Biochem Biophys Res Commun. April 26, 1995; 209 (3): 823-31.


Fission yeast cdc21+ belongs to a family of proteins involved in an early step of chromosome replication., Coxon A, Maundrell K, Kearsey SE., Nucleic Acids Res. November 11, 1992; 20 (21): 5571-7.

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