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体内枯草芽孢杆菌复制起点与解旋酶加载蛋白的有序关联。

Ordered association of helicase loader proteins with the Bacillus subtilis origin of replication in vivo.

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Mol Microbiol. 2010 Jan;75(2):452-61. doi: 10.1111/j.1365-2958.2009.06999.x. Epub 2009 Dec 4.

Abstract

The essential proteins DnaB, DnaD and DnaI of Bacillus subtilis are required for initiation, but not elongation, of DNA replication, and for replication restart at stalled forks. The interactions and functions of these proteins have largely been determined in vitro based on their roles in replication restart. During replication initiation in vivo, it is not known if these proteins, and the replication initiator DnaA, associate with oriC independently of each other by virtue of their DNA binding activities, as a (sub)complex like other loader proteins, or in a particular dependent order. We used temperature-sensitive mutants or a conditional degradation system to inactivate each protein and test for association of the other proteins with oriC in vivo. We found that there was a clear order of stable association with oriC; DnaA, DnaD, DnaB, and finally DnaI-mediated loading of helicase. The loading of helicase via stable intermediates resembles that of eukaryotes and the established hierarchy provides several potential regulatory points. The general approach described here can be used to analyse assembly of other complexes.

摘要

枯草芽孢杆菌的必需蛋白 DnaB、DnaD 和 DnaI 参与 DNA 复制的起始,但不参与延伸,还参与停滞复制叉的复制重启动。这些蛋白的相互作用和功能在很大程度上是根据它们在复制重启动中的作用在体外确定的。在体内复制起始过程中,尚不清楚这些蛋白(以及复制起始蛋白 DnaA)是否通过其 DNA 结合活性,彼此独立地与 oriC 结合,是像其他加载蛋白一样形成(亚)复合物,还是按照特定的依赖顺序进行。我们使用温度敏感突变体或条件性降解系统使每种蛋白失活,并在体内检测其他蛋白与 oriC 的结合情况。我们发现,与 oriC 稳定结合有一个明确的顺序;DnaA、DnaD、DnaB,最后是 DnaI 介导的解旋酶加载。通过稳定中间体加载解旋酶类似于真核生物,已建立的层次结构提供了几个潜在的调控点。这里描述的一般方法可用于分析其他复合物的组装。

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