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P1质粒着丝粒对P1分配基因表达的影响。

Effects of the P1 plasmid centromere on expression of P1 partition genes.

作者信息

Hao Jian-Jiang, Yarmolinsky Michael

机构信息

Laboratory of Biochemistry, National Cancer Institute, National Institutes of Health, 37 Convent Drive, Bethesda, MD 20892-4255, USA.

出版信息

J Bacteriol. 2002 Sep;184(17):4857-67. doi: 10.1128/JB.184.17.4857-4867.2002.

Abstract

The partition operon of P1 plasmid encodes two proteins, ParA and ParB, required for the faithful segregation of plasmid copies to daughter cells. The operon is followed by a centromere analog, parS, at which ParB binds. ParA, a weak ATPase, represses the par promoter most effectively in its ADP-bound form. ParB can recruit ParA to parS, stimulate its ATPase, and significantly stimulate the repression. We report here that parS also participates in the regulation of expression of the par genes. A single chromosomal parS was shown to augment repression of several copies of the par promoter by severalfold. The repression increase was sensitive to the levels of ParA and ParB and to their ratio. The increase may be attributable to a conformational change in ParA mediated by the parS-ParB complex, possibly acting catalytically. We also observed an in cis effect of parS which enhanced expression of parB, presumably due to a selective modulation of the mRNA level. Although ParB had been earlier found to spread into and silence genes flanking parS, silencing of the par operon by ParB spreading was not significant. Based upon analogies between partitioning and septum placement, we speculate that the regulatory switch controlled by the parS-ParB complex might be essential for partitioning itself.

摘要

P1 质粒的分配操纵子编码两种蛋白质,ParA 和 ParB,它们是将质粒拷贝准确分离到子细胞所必需的。该操纵子后面跟着一个着丝粒类似物 parS,ParB 可与之结合。ParA 是一种弱 ATP 酶,以其 ADP 结合形式最有效地抑制 par 启动子。ParB 可以将 ParA 招募到 parS,刺激其 ATP 酶活性,并显著增强抑制作用。我们在此报告,parS 也参与 par 基因表达的调控。单个染色体 parS 被证明可将多个拷贝的 par 启动子的抑制作用增强数倍。抑制作用的增强对 ParA 和 ParB 的水平及其比例敏感。这种增强可能归因于由 parS - ParB 复合物介导的 ParA 的构象变化,可能起催化作用。我们还观察到 parS 的顺式效应增强了 parB 的表达,推测这是由于对 mRNA 水平的选择性调节。尽管之前发现 ParB 会扩散到 parS 侧翼的基因并使其沉默,但 ParB 扩散导致的 par 操纵子沉默并不显著。基于分配和隔膜放置之间的类比,我们推测由 parS - ParB 复合物控制的调节开关可能对分配本身至关重要。

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