Yan B, Takahashi T, McCain D A, Rao V J, Nakanishi K, Spudich J L
Department of Chemistry, Columbia University, New York 10027.
Biophys J. 1990 Mar;57(3):477-83. doi: 10.1016/S0006-3495(90)82564-9.
Ring desmethyl and acyclic analogues of all-trans retinal were incorporated into the apoprotein of the phototaxis receptor sensory rhodopsin I (SR-I) in Halobacterium halobium membranes. All modified retinals generate SR-I analogue pigments which exhibit "opsin shifts," i.e., their absorption spectra are shifted to longer wavelengths compared with model protonated Schiff bases of the same analogues. Each SR-I pigment analogue exhibits cyclic photochemical reactions as monitored by flash spectroscopy, but the analogue photocycles differ from that of native SR-I by exhibiting pronounced biphasic recovery of flash-induced absorption changes and abnormal flash-induced absorption difference spectra. Despite perturbations in the photochemical properties, the SR-I pigment analogues are capable of both attractant (single photon) and repellent (two photon) phototaxis signaling in cells. Our interpretation is that the hydrophobic ring substituents interact with the binding pocket to maintain the correct configuration for native SR-I absorption and photochemistry, but these interactions are not essential for the physiological function of SR-I as a dual attractant/repellent phototaxis receptor. These results support the conclusion emerging from several studies that the photoactivation process that triggers the conformation changes of SR-I and the related proton pump bacteriorhodopsin is conserved despite the different biological functions of their photoactivation.
全反式视黄醛的环脱甲基和无环类似物被整合到嗜盐菌细胞膜中趋光性受体感官视紫红质I(SR-I)的脱辅基蛋白中。所有修饰的视黄醛都产生SR-I类似物色素,这些色素表现出“视蛋白位移”,即与相同类似物的模型质子化席夫碱相比,它们的吸收光谱向更长波长移动。通过闪光光谱监测,每种SR-I色素类似物都表现出循环光化学反应,但类似物的光循环与天然SR-I的光循环不同,表现为闪光诱导的吸收变化有明显的双相恢复以及异常的闪光诱导吸收差光谱。尽管光化学性质受到干扰,但SR-I色素类似物在细胞中仍能够进行吸引(单光子)和排斥(双光子)趋光性信号传导。我们的解释是,疏水环取代基与结合口袋相互作用,以维持天然SR-I吸收和光化学的正确构型,但这些相互作用对于SR-I作为双吸引/排斥趋光性受体的生理功能并非必不可少。这些结果支持了几项研究得出的结论,即尽管SR-I和相关质子泵细菌视紫红质的光激活具有不同的生物学功能,但触发它们构象变化的光激活过程是保守的。