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一种 pH 敏感开关激活了 …… 的毒力。

A pH-sensitive switch activates virulence in .

机构信息

Mechanobiology Institute, National University of Singapore, Singapore, Singapore.

Department of Biochemistry and Molecular Biology, The University of Texas Medical Branch at Galveston, Galveston, United States.

出版信息

Elife. 2023 Sep 14;12:e85690. doi: 10.7554/eLife.85690.

Abstract

The transcriptional regulator SsrB acts as a switch between virulent and biofilm lifestyles of non-typhoidal serovar Typhimurium. During infection, phosphorylated SsrB activates genes on Pathogenicity Island-2 (SPI-2) essential for survival and replication within the macrophage. Low pH inside the vacuole is a key inducer of expression and SsrB activation. Previous studies demonstrated an increase in SsrB protein levels and DNA-binding affinity at low pH; the molecular basis was unknown (Liew et al., 2019). This study elucidates its underlying mechanism and in vivo significance. Employing single-molecule and transcriptional assays, we report that the SsrB DNA-binding domain alone (SsrBc) is insufficient to induce acid pH-sensitivity. Instead, His12, a conserved residue in the receiver domain confers pH sensitivity to SsrB allosterically. Acid-dependent DNA binding was highly cooperative, suggesting a new configuration of SsrB oligomers at SPI-2-dependent promoters. His12 also plays a role in SsrB phosphorylation; substituting His12 reduced phosphorylation at neutral pH and abolished pH-dependent differences. Failure to flip the switch in SsrB renders avirulent and represents a potential means of controlling virulence.

摘要

转录调节因子 SsrB 充当非伤寒血清型鼠伤寒沙门氏菌毒力和生物膜生活方式之间的转换开关。在感染过程中,磷酸化的 SsrB 激活了致病性岛-2(SPI-2)上的基因,这些基因对于巨噬细胞内的存活和复制至关重要。空泡内的低 pH 值是表达和 SsrB 激活的关键诱导剂。先前的研究表明,在低 pH 值下,SsrB 蛋白水平和 DNA 结合亲和力增加;但其分子基础尚不清楚(Liew 等人,2019 年)。本研究阐明了其潜在机制和体内意义。通过单分子和转录测定,我们报告说,单独的 SsrB DNA 结合结构域(SsrBc)不足以诱导酸 pH 值敏感性。相反,在受体结构域中保守的组氨酸 12 以别构的方式赋予 SsrB 对 pH 值的敏感性。酸依赖性 DNA 结合具有高度协同性,表明在 SPI-2 依赖性启动子处存在 SsrB 寡聚体的新构象。His12 还在 SsrB 磷酸化中发挥作用;取代 His12 降低了中性 pH 值下的磷酸化,并消除了 pH 值依赖性差异。SsrB 开关无法翻转会导致无毒力,这可能是控制毒力的一种潜在手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e1e/10519707/be9cf489dd96/elife-85690-fig5-figsupp2.jpg

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