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棒状和锥状视觉色素的超快瞬态吸收光谱和动力学。

Ultrafast Transient Absorption Spectra and Kinetics of Rod and Cone Visual Pigments.

机构信息

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

Thermo Fisher Scientific, Hillsboro, OR 97124, USA.

出版信息

Molecules. 2023 Aug 2;28(15):5829. doi: 10.3390/molecules28155829.

Abstract

Rods and cones are the photoreceptor cells containing the visual pigment proteins that initiate visual phototransduction following the absorption of a photon. Photon absorption induces the photochemical transformation of a visual pigment, which results in the sequential formation of distinct photo-intermediate species on the femtosecond to millisecond timescales, whereupon a visual electrical signal is generated and transmitted to the brain. Time-resolved spectroscopic studies of the rod and cone photo-intermediaries enable the detailed understanding of initial events in vision, namely the key differences that underlie the functionally distinct scotopic (rod) and photopic (cone) visual systems. In this paper, we review our recent ultrafast (picoseconds to milliseconds) transient absorption studies of rod and cone visual pigments with a detailed comparison of the transient molecular spectra and kinetics of their respective photo-intermediaries. Key results include the characterization of the porphyropsin (carp fish rhodopsin) and human green-cone opsin photobleaching sequences, which show significant spectral and kinetic differences when compared against that of bovine rhodopsin. These results altogether reveal a rather strong interplay between the visual pigment structure and its corresponding photobleaching sequence, and relevant outstanding questions that will be further investigated through a forthcoming study of the human blue-cone visual pigment are discussed.

摘要

视杆细胞和视锥细胞是含有视觉色素蛋白的光感受器细胞,它们在吸收光子后启动视觉光转化。光子吸收诱导视觉色素的光化学反应,导致在飞秒到毫秒时间尺度上形成不同的光中间产物,随后产生视觉电信号并传输到大脑。对视杆和视锥光中间产物的时间分辨光谱研究使我们能够详细了解视觉中的初始事件,即构成功能上不同的暗视觉(视杆)和明视觉(视锥)视觉系统的关键差异。在本文中,我们回顾了我们最近对视杆和视锥视觉色素的超快(皮秒到毫秒)瞬态吸收研究,并详细比较了它们各自光中间产物的瞬态分子光谱和动力学。主要结果包括对鱼视网膜紫质(carp fish rhodopsin)和人绿锥视蛋白光漂白序列的表征,与牛视紫红质相比,它们在光谱和动力学上存在显著差异。这些结果共同揭示了视觉色素结构与其相应的光漂白序列之间相当强烈的相互作用,以及通过即将进行的人蓝锥视觉色素研究将进一步探讨的相关悬而未决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dbe/10421382/b96616662a8d/molecules-28-05829-g001.jpg

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