Department of Physics, University of Osnabrück, Osnabrück, Germany.
Laboratory of Physical Chemistry, ETH Zürich, Zürich, Switzerland.
Photochem Photobiol. 2019 Sep;95(5):1195-1204. doi: 10.1111/php.13096. Epub 2019 Mar 29.
Styrene-maleic acid lipid particles (SMALPs) provide stable water-soluble nanocontainers for lipid-encased membrane proteins. Possible effects of the SMA-stabilized lipid environment on the interaction dynamics between functionally coupled membrane proteins remain to be elucidated. The photoreceptor sensory rhodopsin II, NpSRII and its cognate transducer, NpHtrII, of Natronomonas pharaonis form a transmembrane complex, NpSRII /NpHtrII that plays a key role in negative phototaxis and provides a unique model system to study the light-induced transfer of a conformational signal between two integral membrane proteins. Photon absorption induces transient structural changes in NpSRII comprising an outward movement of helix F that cause further conformational alterations in NpHtrII. We applied site-directed spin labeling and time-resolved optical and EPR spectroscopy to compare the conformational dynamics of NpSRII /NpHtrII reconstituted in SMALPs with that of nanolipoprotein particle and liposome preparations. NpSRII and NpSRII /NpHtrII show similar photocycles in liposomes and nanolipoprotein particles. An accelerated decay of the M photointermediate found for SMALPs can be explained by a high local proton concentration provided by the carboxylic groups of the SMA polymer. Light-induced large-scale conformational changes of NpSRII /NpHtrII observed in liposomes and nanolipoprotein particles are affected in SMALPs, indicating restrictions of the protein's conformational freedom.
苯乙烯-马来酸脂类粒子(SMALPs)为包裹脂类的膜蛋白提供了稳定的水溶性纳米容器。SMA 稳定的脂类环境对功能偶联膜蛋白之间相互作用动力学的可能影响仍有待阐明。嗜盐古菌的光感受器感觉视紫红质 II(NpSRII)及其互补转导蛋白 NpHtrII 形成一个跨膜复合物 NpSRII/NpHtrII,该复合物在负向光趋性中起着关键作用,并提供了一个独特的模型系统来研究两个完整膜蛋白之间构象信号的光诱导传递。光子吸收诱导 NpSRII 的瞬时结构变化,包括 F 螺旋的向外移动,这导致 NpHtrII 的进一步构象改变。我们应用定点旋转标记和时间分辨光学和 EPR 光谱来比较在 SMALPs 中重建的 NpSRII/NpHtrII 的构象动力学与纳米脂蛋白颗粒和脂质体制剂的构象动力学。NpSRII 和 NpSRII/NpHtrII 在脂质体和纳米脂蛋白颗粒中表现出相似的光循环。SMALPs 中发现的 M 光中间体衰减加速可以用 SMA 聚合物的羧基提供的高局部质子浓度来解释。在脂质体和纳米脂蛋白颗粒中观察到的 NpSRII/NpHtrII 的光诱导大规模构象变化在 SMALPs 中受到影响,表明蛋白质构象自由度受到限制。