MCM2/YBL023C Literature Guide Help

Other names published for MCM2: YBL023C

MCM2 - Techniques and Reagents (10)

ReferenceOther Genes Addressed
Heller RC, et al.  (2011) Eukaryotic origin-dependent DNA replication in vitro reveals sequential action of DDK and S-CDK kinases. Cell 146(1):80-91
Bochman ML and Schwacha A  (2010) The Saccharomyces cerevisiae Mcm6/2 and Mcm5/3 ATPase active sites contribute to the function of the putative Mcm2-7 'gate'. Nucleic Acids Res 38(18):6078-88
Cobb J and van Attikum H  (2010) Mapping Genomic Targets of DNA Helicases by Chromatin Immunoprecipitation in Saccharomyces cerevisiae. Methods Mol Biol 587():113-26
Kaplan DL and Bruck I  (2010) Methods to study kinase regulation of the replication fork helicase. Methods 51(3):358-362
Kawasaki Y, et al.  (2006) Reconstitution of Saccharomyces cerevisiae prereplicative complex assembly in vitro. Genes Cells 11(7):745-56
Davey MJ, et al.  (2003) Reconstitution of the Mcm2-7p heterohexamer, subunit arrangement, and ATP site architecture. J Biol Chem 278(7):4491-9
Schwacha A and Bell SP  (2001) Interactions between two catalytically distinct MCM subgroups are essential for coordinated ATP hydrolysis and DNA replication. Mol Cell 8(5):1093-104
Labib K, et al.  (2000) Uninterrupted MCM2-7 function required for DNA replication fork progression. Science 288(5471):1643-7
Oshiro G, et al.  (1999) Cell cycle control of Cdc7p kinase activity through regulation of Dbf4p stability. Mol Cell Biol 19(7):4888-96
Pasero P and Gasser SM  (1998) New systems for replicating DNA in vitro. Curr Opin Cell Biol 10(3):304-10