Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX, USA.
Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka, Japan.
Photochem Photobiol. 2022 Nov;98(6):1303-1311. doi: 10.1111/php.13621. Epub 2022 Apr 1.
This paper presents room temperature nanoseconds to milliseconds time-resolved spectra and kinetics of the intermediate states and species of bovine and carp fish rhodopsin visual pigments, which also contained ~5% cone pigments. The nanoseconds to milliseconds range cover all the major intermediates in the visual phototransduction process except the formation of bathorhodopsin intermediate which occurs at the femtosecond time scale. The dynamics of these visual pigment intermediates are initiated by excitation with a 532 nm nanosecond laser pulse. The recorded differences between bovine and carp rhodopsin time-resolved spectra of the formation and decay kinetics of their intermediates are presented and discussed. The data show that the carp samples batho intermediate decays faster, nearly by a factor of three, compared to the bovine samples. The formation and decay spectra and kinetics of rhodopsin outer segments and extracted rhodopsin inserted in buffer solution were found to be identical, with very small differences between them in the decay lifetimes of bathorhodopsin and formation of lumirhodopsin.
本文呈现了牛和鲤鱼视紫红质视觉色素的室温纳秒至毫秒时间分辨光谱和中间状态及物种的动力学,其中还包含约 5%的圆锥体色素。纳秒至毫秒范围涵盖了视觉光致异构过程中的所有主要中间产物,除了在飞秒时间尺度上发生的视紫红质中间产物的形成。这些视觉色素中间产物的动力学是通过用 532nm 纳秒激光脉冲激发来启动的。本文呈现并讨论了牛和鲤鱼视紫红质中间产物的形成和衰减动力学之间的纳秒至毫秒时间分辨光谱的差异。数据表明,与牛样本相比,鲤鱼样本的视紫红质中间产物的衰减速度更快,几乎快了三倍。在外节段的视紫红质的形成和衰减光谱和动力学以及插入缓冲溶液中的提取视紫红质的形成和衰减光谱和动力学是相同的,它们在视紫红质中间产物的衰减寿命和光视紫红质的形成之间只有很小的差异。