Yan B, Xie A, Nienhaus G U, Katsuta Y, Spudich J L
Department of Microbiology and Molecular Genetics, University of Texas Medical School, Houston 77030.
Biochemistry. 1993 Sep 28;32(38):10224-32. doi: 10.1021/bi00089a044.
Steric constraints in the retinal binding pocket of sensory rhodopsin I (SR-I) are analyzed by studying effects of sample temperature and retinal analogs. The flash-induced yield of the earliest detected intermediate S610, which corresponds to the K intermediate in the bacteriorhodopsin (BR) photocycle, decreases below 220 K and reaches zero at 100 K, while K formation is independent of temperature. The reduced S610 formation at low temperatures indicates a more restricted retinal binding pocket in SR-I during primary photochemical events. Introduction of bulky substituents on the retinal polyene chain in four retinal analogs greatly retards or blocks the final step of chromophore binding to the apoprotein of SR-I. Except for the 14-methyl substitution, these modifications exhibit little or no effect on chromophore binding to BR apoprotein. These results corroborate that the retinal polyene chain binding domain in SR-I is more sterically constrained than that of the retinal pocket in BR. Deletion of the beta-ionone ring renders the analog SR-I pigments nonfunctional, as does deletion of the 13-methyl group, but the corresponding BR analogs are both photochemically and physiologically active. In contrast to the corresponding BR analog, photolysis of the analog SR-I reconstituted with 13-desmethylretinal does not produce an S610-like intermediate at room temperature. The above results and the previous findings that protein constraints inhibit the accommodation of a stable 13-cis-retinal configuration in SR-I suggest a model in which the 13-methyl group functions as a fulcrum to permit movement of one or both ends of retinal to overcome an energy barrier against isomerization.
通过研究样品温度和视黄醛类似物的影响,分析了感官视紫红质I(SR-I)视网膜结合口袋中的空间限制。最早检测到的中间体S610的闪光诱导产率,其对应于细菌视紫红质(BR)光循环中的K中间体,在220K以下降低并在100K时达到零,而K的形成与温度无关。低温下S610形成的减少表明在初级光化学事件期间SR-I中的视网膜结合口袋受到更严格的限制。在四种视黄醛类似物的视黄醛多烯链上引入庞大的取代基极大地延迟或阻止了发色团与SR-I脱辅基蛋白结合的最后一步。除了14-甲基取代外,这些修饰对发色团与BR脱辅基蛋白的结合几乎没有影响。这些结果证实,SR-I中的视黄醛多烯链结合结构域在空间上比BR中的视黄醛口袋受到更多限制。β-紫罗兰酮环的缺失使类似物SR-I色素失去功能,13-甲基基团的缺失也是如此,但相应的BR类似物在光化学和生理上都是有活性的。与相应的BR类似物相反,用13-去甲基视黄醛重构的类似物SR-I在室温下光解不会产生类似S610的中间体。上述结果以及先前的发现,即蛋白质限制抑制了SR-I中稳定的13-顺式视黄醛构型的容纳,提示了一个模型,其中13-甲基基团作为支点,允许视黄醛一端或两端移动以克服异构化的能量障碍。