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体外Xer位点特异性重组

Xer site-specific recombination in vitro.

作者信息

Arciszewska L K, Sherratt D J

机构信息

Department of Biochemistry, University of Oxford, UK.

出版信息

EMBO J. 1995 May 1;14(9):2112-20. doi: 10.1002/j.1460-2075.1995.tb07203.x.

Abstract

Two related recombinases, XerC and XerD, belonging to the lambda integrase family of enzymes, are required for Xer site-specific recombination in vivo. In order to understand the roles of these proteins in the overall reaction mechanism, an in vitro recombination system using a synthetic Holliday junction-containing substrate has been developed. Recombination of this substrate is efficient and requires both XerC and XerD. However, only exchange of one pair of strands, the one corresponding to the conversion of the Holliday junction intermediate back to the substrate, has been observed. Recombination reactions using XerC and XerD derivatives that are mutant in their presumptive catalytic residues, or are maltose-binding fusion recombinase derivatives, have demonstrated that this pair of strand exchanges is catalysed by XerC. The site of XerC-mediated cleavage has been located to between the last nucleotide of the XerC binding site and the first nucleotide of the central region. Cleavage at this site generates a free 5'-OH and a covalent complex between XerC and the 3' end of the DNA.

摘要

体内Xer位点特异性重组需要两种相关的重组酶XerC和XerD,它们属于λ整合酶家族。为了了解这些蛋白质在整个反应机制中的作用,已开发出一种使用含合成霍利迪连接体底物的体外重组系统。该底物的重组效率高,且需要XerC和XerD两者。然而,仅观察到一对链的交换,即对应于霍利迪连接体中间体转化回底物的那对链的交换。使用在其假定催化残基处突变的XerC和XerD衍生物或麦芽糖结合融合重组酶衍生物进行的重组反应表明,这对链的交换由XerC催化。XerC介导的切割位点已定位在XerC结合位点的最后一个核苷酸与中心区域的第一个核苷酸之间。该位点的切割产生一个游离的5'-OH以及XerC与DNA 3'端之间的共价复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8569/398313/0d9f0cd087bc/emboj00033-0279-a.jpg

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