Lee D G, Bell S P
Massachusetts General Hospital, Boston, MA 02114, USA.
Curr Opin Cell Biol. 2000 Jun;12(3):280-5. doi: 10.1016/s0955-0674(00)00089-2.
Proteins that bind and hydrolyze ATP are frequently involved in the early steps of DNA replication. Recent studies of Saccharomyces cerevisiae suggest that two members of the AAA+ ATPase family--the origin recognition complex and Cdc6p--have separable roles for ATP binding and ATP hydrolysis during eukaryotic DNA replication. Intriguingly, the proposed regulation of these eukaryotic replication proteins by ATP has functional similarities to the ATP-dependent control of the DnaA and DnaC initiation factors from Escherichia coli. Comparison of the ATP regulation of these factors suggests that ATP binding and hydrolysis acts as a molecular switch that couples key events during initiation of replication. This switch results in a significant change in protein function.
能够结合并水解ATP的蛋白质常常参与DNA复制的起始步骤。对酿酒酵母的最新研究表明,AAA+ ATP酶家族的两个成员——起始识别复合物和Cdc6p——在真核生物DNA复制过程中,对于ATP结合和ATP水解具有不同的作用。有趣的是,ATP对这些真核生物复制蛋白的调控与大肠杆菌中DnaA和DnaC起始因子的ATP依赖性调控具有功能相似性。对这些因子的ATP调控进行比较表明,ATP结合和水解充当了一个分子开关,将复制起始过程中的关键事件联系起来。这个开关导致蛋白质功能发生显著变化。