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由痢疾杆菌反沉默因子 VirB 引发的 DNA 超螺旋的局部调节足以缓解 H-NS 介导的沉默。

Localized modulation of DNA supercoiling, triggered by the Shigella anti-silencer VirB, is sufficient to relieve H-NS-mediated silencing.

机构信息

School of Life Sciences, University of Nevada Las Vegas, Las Vegas, NV 89154-4004, USA.

出版信息

Nucleic Acids Res. 2023 May 8;51(8):3679-3695. doi: 10.1093/nar/gkad088.

Abstract

In Bacteria, nucleoid structuring proteins govern nucleoid dynamics and regulate transcription. In Shigella spp., at ≤30°C, the histone-like nucleoid structuring protein (H-NS) transcriptionally silences many genes on the large virulence plasmid. Upon a switch to 37°C, VirB, a DNA binding protein and key transcriptional regulator of Shigella virulence, is produced. VirB functions to counter H-NS-mediated silencing in a process called transcriptional anti-silencing. Here, we show that VirB mediates a loss of negative DNA supercoils from our plasmid-borne, VirB-regulated PicsP-lacZ reporter in vivo. The changes are not caused by a VirB-dependent increase in transcription, nor do they require the presence of H-NS. Instead, the VirB-dependent change in DNA supercoiling requires the interaction of VirB with its DNA binding site, a critical first step in VirB-dependent gene regulation. Using two complementary approaches, we show that VirB:DNA interactions in vitro introduce positive supercoils in plasmid DNA. Subsequently, by exploiting transcription-coupled DNA supercoiling, we reveal that a localized loss of negative supercoils is sufficient to alleviate H-NS-mediated transcriptional silencing independently of VirB. Together, our findings provide novel insight into VirB, a central regulator of Shigella virulence and, more broadly, a molecular mechanism that offsets H-NS-dependent silencing of transcription in bacteria.

摘要

在细菌中,核结构蛋白控制着核区的动态变化并调节转录。在志贺氏菌属中,在 ≤30°C 时,组蛋白样核结构蛋白(H-NS)会使大毒力质粒上的许多基因转录沉默。当温度上升至 37°C 时,VirB(一种 DNA 结合蛋白,也是志贺氏菌毒力的关键转录调控因子)开始合成。VirB 通过一种称为转录反沉默的过程来对抗 H-NS 介导的沉默。在此,我们证明 VirB 在体内介导了我们质粒携带的、由 VirB 调控的 PicsP-lacZ 报告基因的负 DNA 超螺旋的丧失。这种变化不是由 VirB 依赖性转录增加引起的,也不需要 H-NS 的存在。相反,VirB 依赖性 DNA 超螺旋的变化需要 VirB 与它的 DNA 结合位点相互作用,这是 VirB 依赖性基因调控的关键第一步。我们使用两种互补的方法证明了 VirB:DNA 相互作用在体外会导致质粒 DNA 产生正超螺旋。随后,通过利用转录偶联的 DNA 超螺旋,我们揭示了局部负超螺旋的丧失足以缓解 H-NS 介导的转录沉默,而不需要 VirB 的参与。总的来说,我们的发现为 VirB 提供了新的见解,VirB 是志贺氏菌毒力的核心调控因子,更广泛地说,它为抵消细菌中 H-NS 依赖性转录沉默提供了一种分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e15/10164555/a1c9eb1b742d/gkad088fig1.jpg

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