Will William R, Lu Jun, Frost Laura S
Department of Biological Sciences, University of Alberta, Edmonton, Alberta, T6G2E9, Canada.
Mol Microbiol. 2004 Nov;54(3):769-82. doi: 10.1111/j.1365-2958.2004.04303.x.
The conjugative ability of the F plasmid of Escherichia coli is highly growth phase dependent, with plasmid transfer efficiency dropping rapidly as donor cells progress through the growth cycle towards stationary phase. Transfer is dependent on the expression of the plasmid transfer (tra) genes, which are controlled by three plasmid-encoded regulatory proteins: TraJ, TraY and TraM. Here, we show that the nucleoid-associated host protein, H-NS, acts to repress the expression of traM and traJ as cells enter stationary phase, thereby decreasing mating ability to barely detectable levels. Sequence analysis identified regions of predicted intrinsic curvature, to which H-NS preferentially binds, at the promoters of both traM and traJ. H-NS binding at these regions was then confirmed by electrophoretic mobility shift and DNase I protection footprinting assays. Immunoblot assays displayed a significant increase in TraJ and TraM levels in an hns mutant strain. These findings were further supported by Northern and primer extension analyses which showed that whereas both genes were only expressed in early exponential phase in wild-type cells, hns mutant cells exhibited drastic derepression throughout the growth cycle. Transcriptional fusion studies of the individual promoters demonstrated that H-NS-mediated repression was observed when the promoters of both traM and traJ were present in cis to each other. This suggests that H-NS may bind to an extended region of the F plasmid, acting as a regional silencer of promoters for traJ and traM.
大肠杆菌F质粒的接合能力高度依赖于生长阶段,随着供体细胞在生长周期中进入稳定期,质粒转移效率迅速下降。转移依赖于质粒转移(tra)基因的表达,这些基因由三种质粒编码的调节蛋白控制:TraJ、TraY和TraM。在这里,我们表明,类核相关宿主蛋白H-NS在细胞进入稳定期时会抑制traM和traJ的表达,从而将交配能力降低到几乎检测不到的水平。序列分析在traM和traJ的启动子处鉴定出了预测的内在曲率区域,H-NS优先结合这些区域。然后通过电泳迁移率变动分析和DNase I保护足迹分析证实了H-NS在这些区域的结合。免疫印迹分析显示hns突变菌株中TraJ和TraM水平显著增加。Northern分析和引物延伸分析进一步支持了这些发现,结果表明,虽然这两个基因在野生型细胞中仅在指数早期表达,但hns突变细胞在整个生长周期中表现出严重的去抑制。对单个启动子的转录融合研究表明,当traM和traJ的启动子顺式存在时,观察到H-NS介导的抑制作用。这表明H-NS可能与F质粒的一个扩展区域结合,作为traJ和traM启动子的区域沉默子。