首页> 外文期刊>Molecular Microbiology >Insights into transcriptional silencing and anti‐silencing in Shigella flexneri Shigella flexneri : a detailed molecular analysis of the icsP icsP virulence locus
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Insights into transcriptional silencing and anti‐silencing in Shigella flexneri Shigella flexneri : a detailed molecular analysis of the icsP icsP virulence locus

机译:在志贺氏菌志贺氏菌志贺氏菌的转录沉默和防沉默洞察 - ICSP ICSP毒力源区的详细分子分析

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摘要

Summary Transcriptional silencing and anti‐silencing mechanisms modulate bacterial physiology and virulence in many human pathogens. In Shigella species, many virulence plasmid genes are silenced by the h istone‐like n ucleoid s tructuring protein H‐NS and anti‐silenced by the virulence gene regulator VirB. Despite the key role that these regulatory proteins play in Shigella virulence, their mechanisms of transcriptional control remain poorly understood. Here, we characterize the regulatory elements and their relative spacing requirements needed for the transcriptional silencing and anti‐silencing of icsP , a locus that requires remotely located regulatory elements for both types of transcriptional control. Our findings highlight the flexibility of the regulatory elements' positions with respect to each other, and yet, a molecular roadblock docked between the VirB binding site and the upstream H‐NS binding region abolishes transcriptional anti‐silencing by VirB, providing insight into transcriptional anti‐silencing. Our study also raises the need to re‐evaluate the currently proposed VirB binding site. Models of transcriptional silencing and anti‐silencing at this genetic locus are presented, and the implications for understanding these regulatory mechanisms in bacteria are discussed.
机译:发明内容转录沉默和抗沉默机制调节许多人类病原体中的细菌生理学和毒力。在志贺氏种中,许多毒力质粒基因由H istone的n ucleate s结构调整蛋白H-ns沉默,并被毒力基因调节器病毒抗沉默。尽管这些调节蛋白在志贺氏毒力中发挥的关键作用,但它们的转录控制机制仍然明白。在这里,我们表征了调节元件及其对ICSP的转录沉默和抗沉默所需的相对间隔要求,该轨迹需要远程定位对两种转录控制的调节元件的基因座。我们的研究结果突出了调节元件相对于彼此的位置的灵活性,然而,在病毒结合位点和上游H-NS结合区域之间停靠的分子障碍废除了病毒的转录抗沉默,从而提供了转录抗体的洞察-Silencing。我们的研究还提出了重新评估目前提出的病毒绑定站点的必要性。展示了在该遗传基因座上转录沉默和抗沉默的模型,并讨论了理解细菌中这些调节机制的影响。

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  • 来源
    《Molecular Microbiology》 |2018年第5期|共14页
  • 作者单位

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

    School of Life SciencesUniversity of NevadaLas Vegas Las Vegas NV 89154‐4004 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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