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[质子泵型微生物视紫红质中质子运输的潜在机制研究]

[A Study on Mechanisms Underlying Proton Transport in Proton Pump-type Microbial Rhodopsins].

作者信息

Tamogami Jun

机构信息

College of Pharmaceutical Sciences, Matsuyama University.

出版信息

Yakugaku Zasshi. 2023;143(2):111-118. doi: 10.1248/yakushi.22-00184.

Abstract

Microbial rhodopsins are photoreceptive membrane proteins composed of seven transmembrane α-helical apoproteins (opsin) and a covalently bound retinal chromophore. Microbial rhodopsins exhibit a cyclic photochemical reaction referred to as photocycle when illuminated. During their photocycles, these proteins perform various functions such as ions transport and photosensing. Among the various functional types of rhodopsins found to date, we have focused on the utility of proton pump-type microbial rhodopsins as optogenetic tools for optical pH control in cells or organelles. To develop effective toolkits for this purpose, a deeper understanding of the proton-pumping mechanism in these rhodopsins may be required. In this review, we first introduce a useful experimental method for measuring rapid transient pH changes with photoinduced proton uptake/release using transparent tin oxide (SnO) or indium-tin oxide (ITO) electrodes. In addition, we describe the unique pH-dependent behavior of the photoinduced proton transfer sequence as well as the vectoriality of proton transportation in proteorhodopsin (PR) from marine eubacteria. Through intensive ITO experiments over wide pH range, including extremely high or low pH values, in combination with photoelectric measurements using Xenopus oocytes or a thin polymer film "Lumirror," we encountered several interesting observations on photoinduced proton transfer in PR:1) proton uptake/release sequence reversal and potential proton translocation direction reversal under alkali conditions, and 2) fast proton release from D227, a secondary counterion of the protonated retinal Schiff base at acidic pH values.

摘要

微生物视紫红质是由七个跨膜α-螺旋载脂蛋白(视蛋白)和一个共价结合的视黄醛发色团组成的光感受膜蛋白。微生物视紫红质在光照时会呈现一种称为光循环的循环光化学反应。在它们的光循环过程中,这些蛋白质执行各种功能,如离子运输和光传感。在迄今为止发现的各种功能类型的视紫红质中,我们专注于质子泵型微生物视紫红质作为用于细胞或细胞器中光学pH控制的光遗传学工具的效用。为了为此目的开发有效的工具包,可能需要更深入地了解这些视紫红质中的质子泵机制。在这篇综述中,我们首先介绍一种使用透明氧化锡(SnO)或氧化铟锡(ITO)电极通过光诱导质子吸收/释放来测量快速瞬态pH变化的有用实验方法。此外,我们描述了光诱导质子转移序列独特的pH依赖性行为以及来自海洋真细菌的质子视紫红质(PR)中质子运输的方向性。通过在包括极高或极低pH值在内的宽pH范围内进行密集的ITO实验,并结合使用非洲爪蟾卵母细胞或薄聚合物膜“Lumirror”的光电测量,我们在PR的光诱导质子转移方面遇到了几个有趣的观察结果:1)在碱性条件下质子吸收/释放序列反转和潜在的质子转运方向反转,以及2)在酸性pH值下质子从质子化视黄醛席夫碱的二级抗衡离子D227快速释放。

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