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室温下人类蓝色视锥视觉色素的超快瞬态吸收光谱和动力学

Ultrafast transient absorption spectra and kinetics of human blue cone visual pigment at room temperature.

作者信息

Krishnamoorthi Arjun, Salom David, Wu Arum, Palczewski Krzysztof, Rentzepis Peter M

机构信息

Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX 77843.

Department of Ophthalmology, Gavin Herbert Eye Institute, University of California Irvine, Irvine, CA 92697.

出版信息

Proc Natl Acad Sci U S A. 2024 Oct 8;121(41):e2414037121. doi: 10.1073/pnas.2414037121. Epub 2024 Oct 2.

Abstract

The ultrafast photochemical reaction mechanism, transient spectra, and transition kinetics of the human blue cone visual pigment have been recorded at room temperature. Ultrafast time-resolved absorption spectroscopy revealed the progressive formation and decay of several metastable photo-intermediates, corresponding to the Batho to Meta-II photo-intermediates previously observed with bovine rhodopsin and human green cone opsin, on the picosecond to millisecond timescales following pulsed excitation. The experimental data reveal several interesting similarities and differences between the photobleaching sequences of bovine rhodopsin, human green cone opsin, and human blue cone opsin. While Meta-II formation kinetics are comparable between bovine rhodopsin and blue cone opsin, the transition kinetics of earlier photo-intermediates and qualitative characteristics of the Meta-I to Meta-II transition are more similar for blue cone opsin and green cone opsin. Additionally, the blue cone photo-intermediate spectra exhibit a high degree of overlap with uniquely small spectral shifts. The observed variation in Meta-II formation kinetics between rod and cone visual pigments is explained based on key structural differences.

摘要

已在室温下记录了人蓝色视锥视觉色素的超快光化学反应机制、瞬态光谱和跃迁动力学。超快时间分辨吸收光谱揭示了几种亚稳态光中间体的逐步形成和衰减,这与之前在牛视紫红质和人绿色视锥视蛋白中观察到的从巴索中间体到Meta-II光中间体相对应,是在脉冲激发后的皮秒到毫秒时间尺度上。实验数据揭示了牛视紫红质、人绿色视锥视蛋白和人蓝色视锥视蛋白的光漂白序列之间的一些有趣的异同。虽然牛视紫红质和蓝色视锥视蛋白之间的Meta-II形成动力学相当,但早期光中间体的跃迁动力学以及蓝色视锥视蛋白和绿色视锥视蛋白的Meta-I到Meta-II跃迁的定性特征更为相似。此外,蓝色视锥光中间体光谱表现出高度重叠且具有独特的小光谱位移。基于关键结构差异解释了在视杆和视锥视觉色素之间观察到的Meta-II形成动力学变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33b9/11474067/415dc004cc95/pnas.2414037121fig01.jpg

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