Davey Megan J, Indiani Chiara, O'Donnell Mike
Howard Hughes Medical Institute, Rockefeller University, New York, New York 10021, USA.
J Biol Chem. 2003 Feb 14;278(7):4491-9. doi: 10.1074/jbc.M210511200. Epub 2002 Dec 11.
The Mcm2-7p heterohexamer is the presumed replicative helicase in eukaryotic cells. Each of the six subunits is required for replication. We have purified the six Saccharomyces cerevisiae MCM proteins as recombinant proteins in Escherichia coli and have reconstituted the Mcm2-7p complex from individual subunits. Study of MCM ATPase activity demonstrates that no MCM protein hydrolyzes ATP efficiently. ATP hydrolysis requires a combination of two MCM proteins. The fifteen possible pairwise mixtures of MCM proteins yield only three pairs of MCM proteins that produce ATPase activity. Study of the Mcm3/7p ATPase shows that an essential arginine in Mcm3p is required for hydrolysis of the ATP bound to Mcm7p. Study of the pairwise interactions between MCM proteins connects the remaining MCM proteins to the Mcm3/7p pair. The data predict which subunits in the ATPase pairs bind the ATP that is hydrolyzed and indicate the arrangement of subunits in the Mcm2-7p heterohexamer.
Mcm2 - 7p异源六聚体被认为是真核细胞中的复制解旋酶。六个亚基中的每一个对于复制都是必需的。我们已在大肠杆菌中作为重组蛋白纯化了六种酿酒酵母MCM蛋白,并从单个亚基中重构了Mcm2 - 7p复合物。对MCM ATP酶活性的研究表明,没有一种MCM蛋白能有效地水解ATP。ATP水解需要两种MCM蛋白的组合。MCM蛋白的十五种可能的两两混合物仅产生三对具有ATP酶活性的MCM蛋白。对Mcm3/7p ATP酶的研究表明,Mcm3p中的一个必需精氨酸对于与Mcm7p结合的ATP的水解是必需的。对MCM蛋白之间两两相互作用的研究将其余的MCM蛋白与Mcm3/7p对联系起来。这些数据预测了ATP酶对中的哪些亚基结合被水解的ATP,并表明了Mcm2 - 7p异源六聚体中亚基的排列方式。