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结核分枝杆菌 EspR 毒力调节子中亚基间相互作用的功能剖析。

Functional dissection of intersubunit interactions in the EspR virulence regulator of Mycobacterium tuberculosis.

机构信息

Global Health Institute, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

J Bacteriol. 2014 May;196(10):1889-900. doi: 10.1128/JB.00039-14. Epub 2014 Mar 14.

Abstract

The nucleoid-associated protein EspR, a chromosome organizer, has pleiotropic effects on expression of genes associated with cell wall function and pathogenesis in Mycobacterium tuberculosis. In particular, EspR binds to several sites upstream of the espACD locus to promote its expression, thereby ensuring full function of the ESX-1 secretion system, a major virulence determinant. The N terminus of EspR contains the helix-turn-helix DNA-binding domain, whereas the C-terminal dimerization domain harbors residues involved in intersubunit interactions. While direct binding to DNA appears to be mediated by an EspR dimer-of-dimers, where two helix-turn-helix motifs remain free for long-range interactions, the mechanism of EspR higher-order organization and its impact on chromosome structure and gene expression are not understood. To investigate these processes, we identified seven amino acid residues using molecular dynamics and replaced them with Ala in order to probe interactions at either the dimer or the dimer-of-dimers interfaces. Arg70, Lys72, and Arg101 were important for protein stability and optimal DNA-binding activity. Moreover, the Arg70 mutant showed decreased dimerization in a mycobacterial two-hybrid system. To correlate these defects with higher-order organization and transcriptional activity, we used atomic force microscopy to observe different EspR mutant proteins in complex with the espACD promoter region. In addition, complementation of an M. tuberculosis espR knockout mutant was performed to measure their impact on EspA expression. Our results pinpoint key residues required for EspR function at the dimer (Arg70) and the dimer-of-dimers (Lys72) interface and demonstrate that EspR dimerization and higher-order oligomerization modulate espACD transcriptional activity and hence pathogenesis.

摘要

核相关蛋白 EspR 作为染色体组织者,对结核分枝杆菌细胞壁功能和发病机制相关基因的表达具有多种影响。特别是,EspR 结合到 espACD 基因座上游的几个位点,促进其表达,从而确保 ESX-1 分泌系统的充分功能,这是一个主要的毒力决定因素。EspR 的 N 端包含螺旋-转角-螺旋 DNA 结合域,而 C 端二聚化结构域则含有涉及亚基间相互作用的残基。虽然 EspR 二聚体似乎通过 EspR 二聚体直接与 DNA 结合,其中两个螺旋-转角-螺旋基序保持自由进行长程相互作用,但 EspR 高级结构的形成机制及其对染色体结构和基因表达的影响尚不清楚。为了研究这些过程,我们使用分子动力学鉴定了七个氨基酸残基,并将其替换为 Ala,以探测二聚体或二聚体二聚体界面的相互作用。Arg70、Lys72 和 Arg101 对蛋白质稳定性和最佳 DNA 结合活性很重要。此外,Arg70 突变体在分枝杆菌双杂交系统中显示出二聚化减少。为了将这些缺陷与高级结构和转录活性相关联,我们使用原子力显微镜观察 EspR 突变蛋白与 espACD 启动子区域的复合物。此外,还进行了结核分枝杆菌 espR 敲除突变体的互补实验,以测量它们对 EspA 表达的影响。我们的结果确定了 EspR 功能在二聚体(Arg70)和二聚体二聚体(Lys72)界面所需的关键残基,并证明 EspR 二聚化和高级寡聚化调节 espACD 转录活性,从而调节发病机制。

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