首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >The effect of the location of the proteic post-segregational stability system within the replicon of plasmid pTF-FC2 on the fine regulation of plasmid replication.
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The effect of the location of the proteic post-segregational stability system within the replicon of plasmid pTF-FC2 on the fine regulation of plasmid replication.

机译:蛋白质分离后稳定系统在质粒pTF-FC2复制子中的位置对质粒复制的精细调节的影响。

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摘要

The broad host-range IncQ-2 family plasmid, pTF-FC2, is a mobilizable, medium copy number plasmid that lacks an active partitioning system. Plasmid stability is enhanced by a toxin-antitoxin (TA) system known as pas (plasmid addiction system) that is located within the replicon between the repB (primase) and the repA (helicase) and repC (DNA-binding) genes. The discovery of a closely related IncQ-2 plasmid, pRAS3, with a completely different TA system located between the repB and repAC genes raised the question of whether the location of pas within the replicon had an effect on the plasmid in addition to its ability to act as a TA system. In this work we demonstrate that the presence of the strongly expressed, autoregulated pas operon within the replicon resulted in an increase in the expression of the downstream repAC genes when autoregulation was relieved. While deletion of the pas module did not affect the average plasmid copy number, a pas-containing plasmid exhibited increased stability compared with a pas deletion plasmid even when the TA system was neutralized. It is proposed that the location of a strongly expressed, autoregulated operon within the replicon results in a rapid, but transient, expression of the repAC genes that enables the plasmid to rapidly restore its normal copy number should it fall below a threshold.
机译:广泛的宿主范围的IncQ-2家族质粒pTF-FC2是一种可移动的,中等拷贝数的质粒,缺少活性分配系统。位于repB(primase)和repA(helasease)和repC(DNA-binding)基因之间的复制子内的称为pas(质粒成瘾系统)的毒素-抗毒素(TA)系统增强了质粒的稳定性。发现一个密切相关的IncQ-2质粒pRAS3,其位于repB和repAC基因之间的TA系统完全不同,这引发了一个问题,即复制子中pas的位置是否除了能充当助教系统。在这项工作中,我们证明了复制子中强烈表达的,自动调节的pas操纵子的存在会导致自动调节解​​除时下游repAC基因的表达增加。虽然删除pas模块不会影响平均质粒拷贝数,但即使中和TA系统,与pas缺失质粒相比,含pas的质粒也表现出更高的稳定性。提出在复制子内强表达的,自动调节的操纵子的位置导致repAC基因的快速但瞬时的表达,如果质粒低于阈值,该表达使质粒能够快速恢复其正常拷贝数。

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