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ColE1 DNA复制起始的多种机制:核糖核酸酶H存在与不存在时的DNA合成

Multiple mechanisms for initiation of ColE1 DNA replication: DNA synthesis in the presence and absence of ribonuclease H.

作者信息

Dasgupta S, Masukata H, Tomizawa J

机构信息

Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.

出版信息

Cell. 1987 Dec 24;51(6):1113-22. doi: 10.1016/0092-8674(87)90597-6.

Abstract

A transcript (RNA II) of plasmid ColE1 that hybridizes with the template DNA is cleaved by RNAase H and used as a primer by DNA polymerase I. However, the plasmid can replicate in bacteria lacking both enzymes, apparently using a different mechanism of initiation of replication. Here we report in vivo and in vitro studies on initiation of DNA replication in the presence or absence of either or both enzymes. Hybridization of RNA II with the template DNA is always required for initiation. Hybridized RNA II is cleaved by RNAase H to form a primer or used as a primer without cleavage by RNAase H. Hybridization also creates a single-stranded region on the nontranscribed strand that can serve as a template for synthesis of the lagging strand in a reaction that does not require DNA polymerase I. Lagging strand synthesis terminates 17 nucleotides upstream of the normal replication origin, forcing unidirectional replication.

摘要

质粒ColE1的转录本(RNA II)与模板DNA杂交后,被核糖核酸酶H切割,并被DNA聚合酶I用作引物。然而,该质粒能够在缺乏这两种酶的细菌中复制,显然是通过一种不同的复制起始机制。在此,我们报告了在有或没有这两种酶中的一种或两种的情况下,对DNA复制起始进行的体内和体外研究。复制起始总是需要RNA II与模板DNA杂交。杂交后的RNA II被核糖核酸酶H切割以形成引物,或者在不被核糖核酸酶H切割的情况下用作引物。杂交还会在非转录链上产生一个单链区域,该区域可作为合成滞后链的模板,此反应不需要DNA聚合酶I。滞后链合成在正常复制起点上游17个核苷酸处终止,从而迫使进行单向复制。

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