微生物和动物紫红质可逆光致变色反应中视网膜质子化希夫碱异构体的模式特异性光响应。

IF 2.9 2区 化学 Q3 CHEMISTRY, PHYSICAL
The Journal of Physical Chemistry B Pub Date : 2024-12-19 Epub Date: 2024-12-06 DOI:10.1021/acs.jpcb.4c06832
Pavel A Kusochek, Olga A Smitienko, Anastasia V Bochenkova
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引用次数: 0

摘要

在微生物和动物视紫红质中,全反式到13-顺式和11-顺式到全反式视网膜质子化希夫碱(RPSB)的初级光异构反应分别发生在亚皮秒的时间尺度上,量子产率高。同时,分离的RPSB表现出较慢的激发态衰变,特别是在其全转化形式中,因此与蛋白质环境的相互作用能够改变反应的时间尺度和特异性。本研究利用高水平的QM/MM计算方法,对微生物Krokinobacter eikastus rhodopsin 2 (KR2)、盐盐杆菌bacteriorhodopsin (BR)和动物Bos taurus visual rhodopsin (Rho)的初始形态和第一光产物中顺式和反式RPSB异构体的主要光响应进行了比较研究。通过模拟蛋白质内部RPSB的光吸收带形状,我们发现它的光响应对正向反应具有高度的模式特异性,从而激发那些促进特定双键异构化的振动模式。该逆反应仅对微生物视紫红质中的13顺式异构体具有特异性,而对视觉视紫红质中的全反式RPSB则没有特异性。这表明在视觉视紫红质中进化高度调谐的11-顺式发色团-蛋白相互作用。我们还强调了两种微生物紫红质中RPSB光响应的差异,并讨论了它们对激发态动力学的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mode-Specific Photoresponse of Retinal Protonated Schiff Base Isomers in the Reversible Photochromic Reactions of Microbial and Animal Rhodopsins.

The primary photoisomerization reactions of the all-trans to 13-cis and 11-cis to all-trans retinal protonated Schiff base (RPSB) in microbial and animal rhodopsins, respectively, occur on a subpicosecond time scale with high quantum yields. At the same time, the isolated RPSB exhibits slower excited-state decay, in particular, in its all-trans form, and hence the interaction with the protein environment is capable of changing the time scale as well as the specificity of the reaction. Here, by using the high-level QM/MM calculations, we provide a comparative study of the primary photoresponse of cis and trans RPSB isomers in both the initial forms and first photoproducts of microbial Krokinobacter eikastus rhodopsin 2 (KR2) and Halobacterium salinarum bacteriorhodopsin (BR), and animal Bos taurus visual rhodopsin (Rho). By simulating photoabsorption band shapes of RPSB inside the proteins, we show that its photoresponse is highly mode-specific for the forward reactions, resulting in excitation of those vibrational modes that facilitate particular double-bond isomerization. The reverse reaction shows specificity only for 13-cis isomers in microbial rhodopsins, whereas the specificity is lost for all-trans RPSB in visual rhodopsin. This indicates evolutionary highly tuned 11-cis chromophore-protein interactions in visual rhodopsin. We also highlight the differences in the photoresponse of RPSB in two microbial rhodopsins and discuss the implications to their excited-state dynamics.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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