含组氨酸磷载体蛋白HPr从σ(70)中分离抗σ(70)因子Rsd的结构基础。

Young Ha Park, Si Hyeon Um, Saemee Song, Yeong Jae Seok, Nam Chul Ha
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引用次数: 12

摘要

含组氨酸磷载体蛋白(HPr)是细菌磷酸烯醇丙酮酸:糖磷酸转移酶系统(PTS)的一般组成部分,参与许多称为PTS糖的磷酸化偶联转运。HPr在培养基中存在PTS糖时主要以去磷酸化形式存在,而在不存在PTS糖时其磷酸化增加。最近的一项研究表明,HPr的去磷酸化形式结合并拮抗抗sigma因子Rsd的功能。这种抗西格玛因子隔离管家西格玛因子σ(70),以促进静止期细胞中RNA聚合酶上的西格玛亚基从σ(70)转换为应激反应西格玛因子σ(S)。在本研究中,以2.1 Å分辨率测定了Rsd和HPr复合物的结构,发现Rsd表面HPr的结合位点与σ(70)的结合位点部分重叠。HPr磷酸化位点在Rsd结合界面上的定位解释了为什么HPr磷酸化会消除其与Rsd的结合。参与HPr-Rsd相互作用的关键残基的突变显著影响了HPr和σ(70)在体外和体内与Rsd结合的竞争。该结果为外部环境中全球基因调控与养分有效性的联系提供了结构基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural basis for the sequestration of the anti-σ(70) factor Rsd from σ(70) by the histidine-containing phosphocarrier protein HPr.

Histidine-containing phosphocarrier protein (HPr) is a general component of the bacterial phosphoenolpyruvate:sugar phosphotransferase system (PTS) involved in the phosphorylation-coupled transport of numerous sugars called PTS sugars. HPr mainly exists in a dephosphorylated form in the presence of PTS sugars in the medium, while its phosphorylation increases in the absence of PTS sugars. A recent study revealed that the dephosphorylated form of HPr binds and antagonizes the function of the antisigma factor Rsd. This anti-sigma factor sequesters the housekeeping sigma factor σ(70) to facilitate switching of the sigma subunit on RNA polymerase from σ(70) to the stress-responsive sigma factor σ(S) in stationary-phase cells. In this study, the structure of the complex of Rsd and HPr was determined at 2.1 Å resolution and revealed that the binding site for HPr on the surface of Rsd partly overlaps with that for σ(70). The localization of the phosphorylation site on HPr at the binding interface for Rsd explains why phosphorylation of HPr abolishes its binding to Rsd. The mutation of crucial residues involved in the HPr-Rsd interaction significantly influenced the competition between HPr and σ(70) for binding to Rsd both in vitro and in vivo. The results provide a structural basis for the linkage of global gene regulation to nutrient availability in the external environment.

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