DNA链交换。

CRC critical reviews in biochemistry Pub Date : 1988-01-01
J D Griffith, L D Harris
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引用次数: 0

摘要

大肠杆菌RecA蛋白和T4噬菌体UvsX蛋白催化的链交换反应的生化和电镜研究表明,这些反应分三个不同的步骤进行。第一步,称为连接,包括将RecA(或UvsX)蛋白组装到单链DNA (ssDNA)分子上,随后寻找与双链DNA (dsDNA)伴侣的同源性,并形成稳定的突触。在第二步(包膜/交换)中,DNA链的交换发生在ATP水解的推动下。第三步(产物释放)需要复合物的分解和蛋白质与dna的分离。本文对RecA和UvsX蛋白催化的体外反应的中间体结构进行了综述。描述了不同DNA分子在体外配对的结果(如线性ssDNA与线性或超扭曲的dsDNA配对)。偏瘫关节是两个DNA分子连接的主要途径,在某些情况下,可能涉及大多数DNA底物分子。由于偏斜关节的性质最近才开始被理解,因此本文考虑了偏斜关节的性质、作用和可能的体内功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA strand exchanges.

Biochemical and electron microscopic studies of the strand exchange reactions catalyzed by the RecA protein of Escherichia coli and the UvsX protein of T4 phage reveal that these reactions proceed in three distinct steps. The first step, termed joining, involves the assembly of RecA (or UvsX) protein onto a single-stranded DNA (ssDNA) molecule and the subsequent search for homology with a double-stranded DNA (dsDNA) partner and formation of a stable synapsis. In the second step (envelopment/exchange), the exchange of DNA strands occurs fueled by the hydrolysis of ATP. The third step (release of products) entails the resolution of the complexes and dissociation of the protein from the DNAs. The structure of the intermediates in the in vitro reactions catalyzed by the RecA and UvsX proteins is emphasized in this review. The results of pairing different DNA molecules in vitro (such as linear ssDNA pairing with linear or supertwisted dsDNA) are described. Paranemic joints represent a major pathway of joining between two DNA molecules which may involve, in some cases, most of the DNA substrate molecules. Since the nature of paranemic joints has only recently begun to be understood, the nature, role, and possible in vivo function of paranemic joining are considered.

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