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大肠杆菌错配修复中MutS和MutL蛋白的协同功能。

The coordinated functions of the E. coli MutS and MutL proteins in mismatch repair.

作者信息

Acharya Samir, Foster Patricia L, Brooks Peter, Fishel Richard

机构信息

Genetics and Molecular Biology Program, Kimmel Cancer Center - BLSB 933, 233 S. 10th Street, Philadelphia, PA 19107, USA.

出版信息

Mol Cell. 2003 Jul;12(1):233-46. doi: 10.1016/s1097-2765(03)00219-3.

Abstract

The Escherichia coli MutS and MutL proteins have been conserved throughout evolution, although their combined functions in mismatch repair (MMR) are poorly understood. We have used biochemical and genetic studies to ascertain a physiologically relevant mechanism for MMR. The MutS protein functions as a regional lesion sensor. ADP-bound MutS specifically recognizes a mismatch. Repetitive rounds of mismatch-provoked ADP-->ATP exchange results in the loading of multiple MutS hydrolysis-independent sliding clamps onto the adjoining duplex DNA. MutL can only associate with ATP-bound MutS sliding clamps. Interaction of the MutS-MutL sliding clamp complex with MutH triggers ATP binding by MutL that enhances the endonuclease activity of MutH. Additionally, MutL promotes ATP binding-independent turnover of idle MutS sliding clamps. These results support a model of MMR that relies on two dynamic and redundant ATP-regulated molecular switches.

摘要

大肠杆菌的MutS和MutL蛋白在整个进化过程中都得以保留,尽管它们在错配修复(MMR)中的联合功能仍知之甚少。我们利用生化和遗传学研究来确定MMR的一种生理相关机制。MutS蛋白作为区域损伤传感器发挥作用。结合ADP的MutS特异性识别错配。错配引发的ADP→ATP交换的重复轮次导致多个不依赖MutS水解的滑动夹加载到相邻的双链DNA上。MutL只能与结合ATP的MutS滑动夹结合。MutS-MutL滑动夹复合物与MutH的相互作用触发MutL结合ATP,从而增强MutH的内切核酸酶活性。此外,MutL促进闲置MutS滑动夹的不依赖ATP结合的周转。这些结果支持了一种MMR模型,该模型依赖于两个动态且冗余的ATP调节分子开关。

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