Rozin Rinat, Wand Amir, Jung Kwang-Hwan, Ruhman Sanford, Sheves Mordechai
Department of Organic Chemistry, Weizmann Institute of Science , Rehovot 76100, Israel.
J Phys Chem B. 2014 Jul 31;118(30):8995-9006. doi: 10.1021/jp504688y. Epub 2014 Jul 17.
Microbial rhodopsins are photoactive proteins, and their binding site can accommodate either all-trans or 13-cis retinal chromophore. The pH dependence of isomeric composition, dark-adaptation rate, and primary events of Anabaena sensory rhodopsin (ASR), a microbial rhodopsin discovered a decade ago, are presented. The main findings are: (a) Two pKa values of 6.5 and 4.0 assigned to two different protein residues are observed using spectroscopic titration experiments for both ground-state retinal isomers: all-trans, 15-anti (AT) and 13-cis, 15-syn (13C). The protonation states of these protein residues affect the absorption spectrum of the pigment and most probably the isomerization process of the retinal chromophore. An additional pKa value of 8.5 is observed only for 13C-ASR. (b) The isomeric composition of ASR is determined over a wide pH range and found to be almost pH-independent in the dark (>96% AT isomer) but highly pH-dependent in the light-adapted form. (c) The kinetics of dark adaptation is recorded over a wide pH range, showing that the thermal isomerization from 13C to AT retinal occurs much faster at high pH rather than under acidic conditions. (d) Primary photochemical events of ASR at pH 5 are recorded using VIS hyperspectral pump-probe spectroscopy with <100 fs resolution and compared with the previously recorded results at pH 7.5. For AT-ASR, these are shown to be almost pH-independent. However, photochemistry of 13C-ASR is pH-dependent and slowed down in acidic environments.
微生物视紫红质是光活性蛋白,其结合位点可容纳全反式或13-顺式视黄醛发色团。本文介绍了十年前发现的一种微生物视紫红质——鱼腥藻感光视紫红质(ASR)的异构体组成、暗适应速率和初级事件的pH依赖性。主要发现如下:(a)通过光谱滴定实验观察到,对于两种基态视网膜异构体:全反式、15-反式(AT)和13-顺式、15-顺式(13C),两个不同蛋白质残基的pKa值分别为6.5和4.0。这些蛋白质残基的质子化状态会影响色素的吸收光谱,很可能还会影响视网膜发色团的异构化过程。仅在13C-ASR中观察到额外的pKa值8.5。(b)在很宽的pH范围内测定了ASR的异构体组成,发现其在黑暗中几乎与pH无关(>96%为AT异构体),但在光适应形式下高度依赖于pH。(c)在很宽的pH范围内记录了暗适应动力学,结果表明,从13C到AT视网膜的热异构化在高pH下比在酸性条件下发生得快得多。(d)使用分辨率小于100 fs的可见高光谱泵浦-探测光谱记录了pH 5时ASR的初级光化学事件,并与之前在pH 7.5时记录的结果进行了比较。对于AT-ASR,这些结果显示几乎与pH无关。然而,13C-ASR的光化学是pH依赖性的,在酸性环境中会减慢。