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全长蛋白YtvA的光反应动力学及与RsbRA的分子间相互作用

Photoreaction Dynamics of a Full-Length Protein YtvA and Intermolecular Interaction with RsbRA.

作者信息

Choi Seokwoo, Nakasone Yusuke, Hellingwerf Klaas J, Terazima Masahide

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

Molecular Microbial Physiology Group, Swammerdam Institute for Life Sciences, University of Amsterdam, 1098 XH Amsterdam, The Netherlands.

出版信息

Biochemistry. 2020 Dec 22;59(50):4703-4710. doi: 10.1021/acs.biochem.0c00888. Epub 2020 Dec 7.

Abstract

YtvA from is a sensor protein that responds to blue light stress and regulates the activity of transcription factor σ. It is composed of the N-terminal LOV (light-oxygen-voltage) domain, the C-terminal STAS (sulfate transporter and anti-sigma factor antagonist) domain, and a linker region connecting them. In this study, the photoreaction and kinetics of full-length YtvA and the intermolecular interaction with a downstream protein, RsbRA, were revealed by the transient grating method. Although N-YLOV-linker, which is composed of the LOV domain of YtvA with helices A'α and Jα, exhibits a diffusion change due to the rotational motion of the helices, the YtvA dimer does not show the diffusion change. This result suggests that the STAS domain inhibits the rotational movement of helices A'α and Jα. We found that the YtvA dimer formed a heterotetramer with the RsbRA dimer probably via the interaction between the STAS domains, and we showed the diffusion change upon blue light illumination with a time constant faster than 70 μs. This result suggests a conformational change of the STAS domains; i.e., the interface between the STAS domains of the proteins changes to enhance the friction with water by the rotation structural change of helices A'α and Jα of YtvA.

摘要

来自[具体来源未提及]的YtvA是一种响应蓝光胁迫并调节转录因子σ活性的传感蛋白。它由N端的LOV(光-氧-电压)结构域、C端的STAS(硫酸盐转运蛋白和抗σ因子拮抗剂)结构域以及连接它们的连接区组成。在本研究中,通过瞬态光栅法揭示了全长YtvA的光反应和动力学以及与下游蛋白RsbRA的分子间相互作用。尽管由YtvA的LOV结构域与螺旋A'α和Jα组成的N-YLOV-连接区由于螺旋的旋转运动而表现出扩散变化,但YtvA二聚体并未显示出扩散变化。这一结果表明STAS结构域抑制了螺旋A'α和Jα的旋转运动。我们发现YtvA二聚体可能通过STAS结构域之间的相互作用与RsbRA二聚体形成异源四聚体,并且我们展示了蓝光照射时扩散变化的时间常数快于70微秒。这一结果表明STAS结构域发生了构象变化;即,蛋白质的STAS结构域之间的界面发生变化,通过YtvA的螺旋A'α和Jα的旋转结构变化来增强与水的摩擦力。

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