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[质粒反向重复序列可实现DNA插入片段的复制或精确切除]

[Plasmid inverted repeats provide for duplication or precise excision of DNA inserts].

作者信息

Bidnenko V E, Khaĭkinson M Ia

出版信息

Mol Gen Mikrobiol Virusol. 1988 Mar(3):27-33.

PMID:3136325
Abstract

A plasmid containing inverted repeats is constructed in Bacillus subtilis. Insertion of DNA fragments into the plasmid inverted repeats results either in the precise excision of the insert or in its duplication in the opposite inverted repeat. These rearrangements are due to the presence of inverted repeats only. Two recombination events are possibly responsible for these phenomena. During the first step of the recombination two plasmid monomers form a dimer molecule. During the second step the intramolecular recombination between the direct repeats in the dimer structure leads to the formation of two rearranged plasmid monomers devoid of insertion or containing two DNA inserts. Proposed dimeric intermediate is unstable in B. subtilis. However, it is isolated from Escherichia coli recA, cells. Plasmids containing the inverted repeats can serve as a model to study plasmid recombination in B. subtilis cells.

摘要

一种含有反向重复序列的质粒在枯草芽孢杆菌中构建而成。将DNA片段插入质粒反向重复序列会导致插入片段的精确切除,或者使其在相反的反向重复序列中发生重复。这些重排仅归因于反向重复序列的存在。可能有两个重组事件导致了这些现象。在重组的第一步,两个质粒单体形成一个二聚体分子。在第二步,二聚体结构中正向重复序列之间的分子内重组导致形成两个没有插入片段或含有两个DNA插入片段的重排质粒单体。所提出的二聚体中间体在枯草芽孢杆菌中不稳定。然而,它可从大肠杆菌recA细胞中分离得到。含有反向重复序列的质粒可作为研究枯草芽孢杆菌细胞中质粒重组的模型。

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