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RecA441蛋白催化的DNA链交换特性可归因于其与单链结合蛋白(SSB蛋白)竞争能力的增强。

Properties of recA441 protein-catalyzed DNA strand exchange can be attributed to an enhanced ability to compete with SSB protein.

作者信息

Lavery P E, Kowalczykowski S C

机构信息

Department of Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611.

出版信息

J Biol Chem. 1990 Mar 5;265(7):4004-10.

PMID:2406267
Abstract

We have investigated the recombinase activity of recA441 protein by comparing its in vitro DNA strand exchange activity to that of wild-type recA protein. Consistent with its proficiency in recombination in vivo, recA441 protein is able to catalyze the in vitro exchange of a circular single-stranded DNA molecule for a homologous strand in a linear double-stranded DNA molecule. Under conditions optimal for wild-type recA protein, the rates of joint molecule formation are the same for the two recA proteins, but the wild-type protein converts these intermediate species to gapped circular heteroduplex DNA product molecules more rapidly than recA441 protein. In the recA441 protein reaction, joint molecules are instead converted to extensive homology-dependent DNA networks via presumed reinitiation reactions. Under some conditions, the DNA strand exchange activity of recA441 protein is enhanced relative to the wild-type. These conditions include when single-stranded DNA.SSB protein (where SSB is Escherichia coli single-stranded DNA-binding protein) complexes are formed prior to the addition of recA protein, at low magnesium ion concentration in the presence of spermidine, and at low ATP concentrations. Under the conditions examined, recA441 protein competes more effectively with SSB protein for DNA-binding sites; thus, the differences between the strand exchange activities of the wild-type and recA441 proteins can be attributed to this enhanced ability in SSB protein competition.

摘要

我们通过比较recA441蛋白与野生型recA蛋白的体外DNA链交换活性,研究了recA441蛋白的重组酶活性。与它在体内的重组能力一致,recA441蛋白能够催化环状单链DNA分子与线性双链DNA分子中的同源链进行体外交换。在对野生型recA蛋白最适宜的条件下,两种recA蛋白形成联合分子的速率相同,但野生型蛋白将这些中间产物转化为有缺口的环状异源双链DNA产物分子的速度比recA441蛋白更快。在recA441蛋白反应中,联合分子反而通过推测的重新起始反应转化为广泛的依赖同源性的DNA网络。在某些条件下,recA441蛋白的DNA链交换活性相对于野生型有所增强。这些条件包括在加入recA蛋白之前形成单链DNA-SSB蛋白(其中SSB是大肠杆菌单链DNA结合蛋白)复合物、在亚精胺存在下低镁离子浓度以及低ATP浓度时。在所研究的条件下,recA441蛋白与SSB蛋白竞争DNA结合位点的能力更强;因此,野生型和recA441蛋白的链交换活性差异可归因于在与SSB蛋白竞争中的这种增强能力。

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