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细菌质粒在细胞分裂过程中的分配:一个实现稳定质粒遗传的顺式作用位点。

Partitioning of bacterial plasmids during cell division: a cis-acting locus that accomplishes stable plasmid inheritance.

作者信息

Meacock P A, Cohen S N

出版信息

Cell. 1980 Jun;20(2):529-42. doi: 10.1016/0092-8674(80)90639-x.

Abstract

We have identified and characterized a genetic function (designated par, for partition) that is required for stable maintenance of plasmids within exponentially growing cell populations. This function, which accomplishes the active distribution of plasmid DNA molecules to daughter cells, has been localized within the pSC101 plasmid to a 270 bp segment adjacent to the replication origin. The par locus, which appears to be functionally equivalent to the centromere of eucaryotic cells, is able to rescue unstable pSC101-derived replicons or an unrelated par- P15A-derived multicopy replicon in the cis, but not the trans, configuration. It is independent of copy number control and dose not specify plasmid incompatibility. Furthermore, it is not associated directly with plasmid replication functions.

摘要

我们已经鉴定并描述了一种遗传功能(命名为par,即分配功能),它对于质粒在指数生长的细胞群体中稳定维持是必需的。该功能可实现质粒DNA分子向子细胞的主动分配,已定位在pSC101质粒中与复制起点相邻的一个270 bp片段内。par位点在功能上似乎等同于真核细胞的着丝粒,它能够挽救不稳定的pSC101衍生复制子或一个不相关的par - P15A衍生多拷贝复制子,但仅在顺式而非反式构型中起作用。它独立于拷贝数控制,且不决定质粒不相容性。此外,它不直接与质粒复制功能相关。

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