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利用时间分辨可见和紫外共振拉曼光谱研究一氧化碳解离后CooA中血红素口袋和C螺旋的动力学

A Study of the Dynamics of the Heme Pocket and C-helix in CooA upon CO Dissociation Using Time-Resolved Visible and UV Resonance Raman Spectroscopy.

作者信息

Otomo Akihiro, Ishikawa Haruto, Mizuno Misao, Kimura Tetsunari, Kubo Minoru, Shiro Yoshitsugu, Aono Shigetoshi, Mizutani Yasuhisa

机构信息

Department of Chemistry, Graduate School of Science, Osaka University , 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.

RIKEN SPring-8 Center , 1-1-1 Kouto, Sayo, Hyogo 679-5148, Japan.

出版信息

J Phys Chem B. 2016 Aug 18;120(32):7836-43. doi: 10.1021/acs.jpcb.6b05634. Epub 2016 Aug 5.

Abstract

CooA is a CO-sensing transcriptional activator from the photosynthetic bacterium Rhodospirillum rubrum that binds CO at the heme iron. The heme iron in ferrous CooA has two axial ligands: His77 and Pro2. CO displaces Pro2 and induces a conformational change in CooA. The dissociation of CO and/or ligation of the Pro2 residue are believed to trigger structural changes in the protein. Visible time-resolved resonance Raman spectra obtained in this study indicated that the ν(Fe-His) mode, arising from the proximal His77-iron stretch, does not shift until 50 μs after the photodissociation of CO. Ligation of the Pro2 residue to the heme iron was observed around 50 μs after the photodissociation of CO, suggesting that the ν(Fe-His) band exhibits no shift until the ligation of Pro2. UV resonance Raman spectra suggested structural changes in the vicinity of Trp110 in the C-helix upon CO binding, but no or very small spectral changes in the time-resolved UV resonance Raman spectra were observed from 100 ns to 100 μs after the photodissociation of CO. These results strongly suggest that the conformational change of CooA is induced by the ligation of Pro2 to the heme iron.

摘要

钴活化蛋白(CooA)是一种来自光合细菌深红红螺菌的一氧化碳感应转录激活因子,它在血红素铁处结合一氧化碳。亚铁形式的CooA中的血红素铁有两个轴向配体:组氨酸77(His77)和脯氨酸2(Pro2)。一氧化碳取代Pro2并诱导CooA发生构象变化。据信,一氧化碳的解离和/或Pro2残基的连接会触发蛋白质的结构变化。本研究中获得的可见时间分辨共振拉曼光谱表明,由近端His77-铁拉伸产生的ν(Fe-His)模式直到一氧化碳光解离后50微秒才发生位移。在一氧化碳光解离后约50微秒观察到Pro2残基与血红素铁的连接,这表明在Pro2连接之前,ν(Fe-His)带没有位移。紫外共振拉曼光谱表明,一氧化碳结合后,C螺旋中色氨酸110(Trp110)附近发生结构变化,但在一氧化碳光解离后100纳秒至100微秒的时间分辨紫外共振拉曼光谱中未观察到光谱变化或变化非常小。这些结果强烈表明,CooA的构象变化是由Pro2与血红素铁的连接诱导的。

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