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蓝光感应蛋白YtvA的构象分析揭示了LOV-LOV二聚化和结构域间相互作用的竞争界面。

Conformational analysis of the blue-light sensing protein YtvA reveals a competitive interface for LOV-LOV dimerization and interdomain interactions.

作者信息

Buttani Valentina, Losi Aba, Eggert Thorsten, Krauss Ulrich, Jaeger Karl-Erich, Cao Zhen, Gärtner Wolfgang

机构信息

Dept. of Physics, University of Parma, via G.P. Usberti 7/A, 43100-Parma, Italy.

出版信息

Photochem Photobiol Sci. 2007 Jan;6(1):41-9. doi: 10.1039/b610375h. Epub 2006 Oct 27.

Abstract

The Bacillus subtilis protein YtvA is related to plant phototropins in that it senses UVA-blue-light by means of the flavin binding LOV domain, linked to a nucleotide-binding STAS domain. The structural basis for interdomain interactions and functional regulation are not known. Here we report the conformational analysis of three YtvA constructs, by means of size exclusion chromatography, circular dichroism (CD) and molecular docking simulations. The isolated YtvA-LOV domain (YLOV, aa 25-126) has a strong tendency to dimerize, prevented in full-length YtvA, but still observed in YLOV carrying the N-terminal extension (N-YLOV, aa 1-126). The analysis of CD data shows that both the N-terminal cap and the linker region (aa 127-147) between the LOV and the STAS domain are helical and that the central beta-scaffold is distorted in the LOV domains dimers. The involvement of the central beta-scaffold in dimerization is supported by docking simulation of the YLOV dimer and the importance of this region is highlighted by light-induced conformational changes, emerging from the CD data analysis. In YtvA, the beta-strand fraction is notably less distorted and distinct light-driven changes in the loops/turn fraction are detected. The data uncover a common surface for LOV-LOV and intraprotein interaction, involving the central beta-scaffold, and offer hints to investigate the molecular basis of light-activation and regulation in LOV proteins.

摘要

枯草芽孢杆菌蛋白YtvA与植物向光素相关,因为它通过与核苷酸结合的STAS结构域相连的黄素结合LOV结构域来感知紫外光-蓝光。结构域间相互作用和功能调节的结构基础尚不清楚。在这里,我们通过尺寸排阻色谱、圆二色性(CD)和分子对接模拟报告了三种YtvA构建体的构象分析。分离的YtvA-LOV结构域(YLOV,氨基酸25-126)有强烈的二聚化倾向,在全长YtvA中被阻止,但在携带N端延伸的YLOV(N-YLOV,氨基酸1-126)中仍可观察到。CD数据分析表明,LOV结构域和STAS结构域之间的N端帽和连接区(氨基酸127-147)都是螺旋状的,并且在LOV结构域二聚体中中央β-支架发生了扭曲。YLOV二聚体的对接模拟支持了中央β-支架参与二聚化,并且CD数据分析显示的光诱导构象变化突出了该区域的重要性。在YtvA中,β-链部分的扭曲明显较小,并且在环/转角部分检测到明显的光驱动变化。这些数据揭示了一个用于LOV-LOV和蛋白内相互作用的共同表面,涉及中央β-支架,并为研究LOV蛋白中光激活和调节的分子基础提供了线索。

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