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一种抑制因子筛选器揭示了终止因子 Rho 的连接区的关键作用。

A Screen for Suppressors Reveals a Key Role for a Connector Region of Termination Factor Rho.

机构信息

Department of Microbiology and The Center for RNA Biology, The Ohio State University, Columbus, Ohio, USA.

Department of Microbiology and The Center for RNA Biology, The Ohio State University, Columbus, Ohio, USA

出版信息

mBio. 2017 May 30;8(3):e00753-17. doi: 10.1128/mBio.00753-17.

Abstract

RfaH activates horizontally acquired operons that encode lipopolysaccharide core components, pili, toxins, and capsules. Unlike its paralog NusG, which potentiates Rho-mediated silencing, RfaH strongly inhibits Rho. RfaH is recruited to its target operons via a network of contacts with an elongating RNA polymerase (RNAP) and a specific DNA element called to modify RNAP into a pause- and NusG-resistant state. null mutations confer hypersensitivity to antibiotics and detergents, altered susceptibility to bacteriophages, and defects in virulence. Here, we carried out a selection for suppressors that restore the ability of a Δ mutant strain to grow in the presence of sodium dodecyl sulfate. We isolated , , and suppressor mutants with changes in regions previously shown to be important for their function. In addition, we identified mutants with changes in an unstructured region that connects the primary RNA-binding and helicase domains of Rho. The connector mutants display strong defects , consistent with their ability to compensate for the loss of RfaH, and act synergistically with bicyclomycin (BCM), which has been recently shown to inhibit Rho transformation into a translocation-competent state. We hypothesize that the flexible connector permits the reorientation of Rho domains and serves as a target for factors that control the motor function of Rho allosterically. Our results, together with the existing data, support a model in which the connector segment plays a hitherto overlooked role in the regulation of Rho-dependent termination. The transcription termination factor Rho silences foreign DNA, reduces antisense transcription, mediates surveillance of mRNA quality, and maintains genome integrity by resolving transcription-replication collisions and deleterious R loops. Upon binding to RNA, Rho undergoes a rate-limiting transition from an open "lock washer" state to a closed ring capable of processive translocation on, and eventually the release of, the nascent transcript. Recent studies revealed that Rho ligands, including its cofactor NusG and inhibitor bicyclomycin, control the ring dynamics allosterically. In this work, we used a genetic selection for suppressors of RfaH, a potent inhibitor of Rho, to isolate a new class of mutations in a flexible region that connects the primary RNA-binding and ATPase/translocase domains of Rho. We propose that the connector is essential for the modulation of Rho activity by different RNA sequences and accessory proteins.

摘要

RfaH 激活水平获得的操纵子,这些操纵子编码脂多糖核心成分、菌毛、毒素和荚膜。与增强 Rho 介导的沉默的 paralog NusG 不同,RfaH 强烈抑制 Rho。RfaH 通过与延伸 RNA 聚合酶 (RNAP) 和特定 DNA 元件的网络接触被招募到其靶操纵子,该 DNA 元件称为,将 RNAP 修饰为暂停和 NusG 抗性状态。RfaH 的缺失突变赋予抗生素和去污剂敏感性增加、对噬菌体易感性改变和毒力缺陷。在这里,我们进行了选择,以寻找恢复Δ突变体在十二烷基硫酸钠存在下生长能力的抑制子。我们分离了、和在以前证明对其功能重要的区域发生变化的抑制子突变体。此外,我们还鉴定了连接 Rho 的主要 RNA 结合和解旋酶结构域的无结构区域发生变化的突变体。连接器突变体显示出强烈的缺陷,与它们能够补偿 RfaH 的缺失一致,并且与 bicyclomycin (BCM) 协同作用,最近表明 bicyclomycin 抑制 Rho 转化为易位状态。我们假设柔性连接器允许 Rho 结构域的重定向,并作为控制 Rho 变构运动功能的因素的靶标。我们的结果与现有数据一起支持这样的模型,即连接器片段在 Rho 依赖性终止的调节中发挥了迄今为止被忽视的作用。转录终止因子 Rho 沉默外源 DNA、减少反义转录、介导 mRNA 质量的监测,并通过解决转录-复制碰撞和有害的 R 环来维持基因组完整性。Rho 结合 RNA 后,经历从开放的“垫圈”状态到能够在和最终释放新生转录本上进行连续易位的封闭环的限速转变。最近的研究表明,Rho 配体,包括其辅助因子 NusG 和抑制剂 bicyclomycin,通过变构控制环动力学。在这项工作中,我们使用针对 Rho 强抑制剂 RfaH 的遗传抑制子选择来分离 Rho 的主要 RNA 结合和 ATPase/转位酶结构域之间的柔性区域中的一类新突变。我们提出连接器对于不同 RNA 序列和辅助蛋白对 Rho 活性的调节是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c0/5449661/662e1f17d66a/mbo0031733290001.jpg

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