首页> 美国卫生研究院文献>Journal of Bacteriology >Location of two relaxation nick sites in R6K and single sites in pSC101 and RSF1010 close to origins of vegetative replication: implication for conjugal transfer of plasmid deoxyribonucleic acid.
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Location of two relaxation nick sites in R6K and single sites in pSC101 and RSF1010 close to origins of vegetative replication: implication for conjugal transfer of plasmid deoxyribonucleic acid.

机译:R6K中两个松弛切口位点的位置以及pSC101和RSF1010中单个位点的位置靠近营养复制的起点:意味着质粒脱氧核糖核酸的结合转移。

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摘要

A nick-labeling method has been used to localize the relaxation complex nick sites in three plasmids (pSC101, RSF1010, and R6K) that differ markedly in their host range, deoxyribonucleic acid replication, and conjugal transfer properties. Single specific relaxation sites were located in pSC101 and RSF1010, but surprisingly two distinct sites could be identified in the bi-origin plasmid R6K. In all cases, relaxation nick sites, which are thought to be origins of plasmid conjugal transfer, were shown to be located near origins of vegetative replication. This result suggests a functional interaction between these two types of deoxyribonucleic acid loci, and we speculate here that application events initiated at origins of replication may constitute an integral part of the process of conjugal transfer of small plasmids among bacteria. Consistent with this proposal is the finding that inhibition of vegetative replication of the pSC101 and ColE1 plasmids results in a severe inhibition of their conjugal transfer ability.
机译:已经使用切口标记法将松弛复合物切口位点定位在三个质粒(pSC101,RSF1010和R6K)中,这三个质粒的宿主范围,脱氧核糖核酸复制和结合转移特性明显不同。单个特定的弛豫位点位于pSC101和RSF1010中,但令人惊讶的是,在双起源质粒R6K中可以识别出两个不同的位点。在所有情况下,据认为是质粒结合转移的起点的松弛切口位点位于营养复制起点附近。该结果表明,这两种类型的脱氧核糖核酸位点之间存在功能相互作用,我们推测在复制起点引发的应用事件可能构成小质粒在细菌之间共轭转移过程的组成部分。与该建议一致的发现是,抑制pSC101和ColE1质粒的营养复制导致严重抑制其结合转移能力。

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