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超螺旋DNA中的十字形解旋酶相互作用。

Cruciform-resolvase interactions in supercoiled DNA.

作者信息

Lilley D M, Kemper B

出版信息

Cell. 1984 Feb;36(2):413-22. doi: 10.1016/0092-8674(84)90234-4.

Abstract

T4 endonuclease VII, which cleaves Holliday-like junctions in DNA, specifically cleaves short inverted repeats in supercoiled plasmids. These sequences are subject to site-specific cleavage by single-strand-specific nucleases, and cruciform formation has been suggested as an explanation for this observation. This proposal is greatly strengthened by the present data, since a formal analogy between cruciform structures and Holliday junctions exists. Resolution of a variety of unrelated cruciform sequences demonstrates that the cleavage process results in a linear molecule with hairpin ends and single ligatable nicks at positions corresponding to the stem-base of the cruciform. In two examples mapped in detail, the cleavages are exclusively introduced at two or three nucleotides from the end of the symmetric sequence at the 5' side on each strand. These studies demonstrate the potential of endonuclease VII as a probe of cruciform structure and the utility of short cruciform structures as Holliday junction models.

摘要

T4核酸内切酶VII可切割DNA中类似霍利迪连接体的结构,它能特异性切割超螺旋质粒中的短反向重复序列。这些序列会被单链特异性核酸酶进行位点特异性切割,有人提出十字形结构的形成可解释这一现象。由于十字形结构与霍利迪连接体之间存在形式上的相似性,目前的数据有力地支持了这一观点。对多种不相关的十字形序列的解析表明,切割过程会产生一个具有发夹末端的线性分子,且在与十字形茎基部相对应的位置有单个可连接的切口。在详细绘制的两个例子中,切割仅在每条链5'端对称序列末端的两三个核苷酸处引入。这些研究证明了核酸内切酶VII作为十字形结构探针的潜力,以及短十字形结构作为霍利迪连接体模型的实用性。

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