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通过交换IncIα和IncFII质粒的复制控制系统来实现其复制区域的进化。

Evolution of the replication regions of IncI alpha and IncFII plasmids by exchanging their replication control systems.

作者信息

Kato A, Mizobuchi K

机构信息

Department of Biophysics and Biochemistry, Faculty of Science, University of Tokyo, Japan.

出版信息

DNA Res. 1994;1(5):201-12. doi: 10.1093/dnares/1.5.201.

Abstract

The basic replicons of bacterial plasmids consist of two sets of genetic systems, the replication-structural system and the replication control system. Comparison of nucleotide sequences suggested that the basic replicons of plasmids P307 (IncFI) and pMU2200 (IncZ) were generated by reciprocal recombination between ancestors of R100 (IncFII) and ColIb-P9 (IncI alpha), or vice versa. The plasmids of each pair, P307/pMU2200 and R100/ColIb-P9, are structurally unrelated to each other. Based on this information, we constructed in vitro and analyzed P307-like chimeric replicons from ColIb-P9 and R100. When the replication-structural region of ColIb-P9 was combined with the whole replication control region of R100, the resultant replicon replicated stably as R100 did. These results revealed that the basic replicons of the plasmids diverged by exchanging their replication control systems. Thus, we propose that the replication control systems of plasmids, in some cases, evolved independently of their structural systems, although these two systems work together to maintain the replication functions. We also showed that the reciprocal recombination was specified by the unique secondary structures of RNA involved in the control of expression of the genes encoding the replication initiator proteins.

摘要

细菌质粒的基本复制子由两套遗传系统组成,即复制结构系统和复制控制系统。核苷酸序列比较表明,质粒P307(IncFI)和pMU2200(IncZ)的基本复制子是由R100(IncFII)和ColIb-P9(IncIα)的祖先之间的相互重组产生的,反之亦然。每对质粒P307/pMU2200和R100/ColIb-P9在结构上彼此无关。基于此信息,我们构建了体外的并分析了来自ColIb-P9和R100的P307样嵌合复制子。当ColIb-P9的复制结构区域与R100的整个复制控制区域结合时,所得复制子像R100一样稳定复制。这些结果表明,质粒的基本复制子通过交换其复制控制系统而发生分化。因此,我们提出,质粒的复制控制系统在某些情况下独立于其结构系统进化,尽管这两个系统共同作用以维持复制功能。我们还表明,相互重组是由参与复制起始蛋白编码基因表达控制的RNA的独特二级结构所决定的。

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