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大肠杆菌中质粒pGKV21的ssi信号的功能特征

Functional features of an ssi signal of plasmid pGKV21 in Escherichia coli.

作者信息

Jeong J Y, Yoon G M, Seo H S, Cho M J, Sakai H, Komano T, Bahk J D

机构信息

Department of Biochemistry, Gyeongsang National University, Chinju, Korea.

出版信息

J Bacteriol. 1997 Sep;179(18):5795-801. doi: 10.1128/jb.179.18.5795-5801.1997.

Abstract

A single-strand initiation (ssi) signal was detected on the Lactococcus lactis plasmid pGKV21 containing the replicon of pWV01 by its ability to complement the poor growth of an M13 phage derivative (M13 delta lac182) lacking the complementary-strand origin in Escherichia coli. This ssi signal was situated at the 229-nucleotide (nt) DdeI-DraI fragment and located within the 109 nt upstream of the nick site of the putative plus origin. SSI activity is orientation specific with respect to the direction of replication. We constructed an ssi signal-deleted plasmid and then examined the effects of the ssi signal on the conversion of the single-stranded replication intermediate to double-stranded plasmid DNA in E. coli. The plasmid lacking an ssi signal accumulated much more plasmid single-stranded DNA than the wild-type plasmid did. Moreover, deletion of this region caused a great reduction in plasmid copy number or plasmid maintenance. These results suggest that in E. coli, this ssi signal directs its lagging-strand synthesis as a minus origin of plasmid pGKV21. Primer RNA synthesis in vitro suggests that E. coli RNA polymerase directly recognizes the 229-nt ssi signal and synthesizes primer RNA dependent on the presence of E. coli single-stranded DNA binding (SSB) protein. This region contains two stem-loop structures, stem-loop I and stem-loop II. Deletion of stem-loop I portion results in loss of priming activity by E. coli RNA polymerase, suggesting that stem-loop I portion is essential for priming by E. coli RNA polymerase on the SSB-coated single-stranded DNA template.

摘要

通过其互补缺乏大肠杆菌中互补链起始位点的M13噬菌体衍生物(M13 delta lac182)生长不良的能力,在含有pWV01复制子的乳酸乳球菌质粒pGKV21上检测到单链起始(ssi)信号。该ssi信号位于229个核苷酸(nt)的DdeI-DraI片段上,且位于推定正链起始位点切口位点上游109 nt内。SSI活性相对于复制方向具有方向特异性。我们构建了一个缺失ssi信号的质粒,然后检测了ssi信号对大肠杆菌中单链复制中间体转化为双链质粒DNA的影响。缺乏ssi信号的质粒比野生型质粒积累了更多的质粒单链DNA。此外,该区域的缺失导致质粒拷贝数或质粒维持率大幅降低。这些结果表明,在大肠杆菌中,该ssi信号作为pGKV21质粒的负链起始位点指导其后随链合成。体外引物RNA合成表明,大肠杆菌RNA聚合酶直接识别229 nt的ssi信号,并依赖大肠杆菌单链DNA结合(SSB)蛋白的存在合成引物RNA。该区域包含两个茎环结构,茎环I和茎环II。茎环I部分的缺失导致大肠杆菌RNA聚合酶引发活性丧失,表明茎环I部分对于大肠杆菌RNA聚合酶在SSB包被的单链DNA模板上引发至关重要。

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Viable deletions of the M13 complementary strand origin.M13互补链起始位点的可行缺失。
Proc Natl Acad Sci U S A. 1981 Nov;78(11):6784-8. doi: 10.1073/pnas.78.11.6784.

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