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细菌视紫红质的光化学循环。

The photochemical cycle of bacteriorhodopsin.

作者信息

Lozier R H, Niederberger W

出版信息

Fed Proc. 1977 May;36(6):1805-9.

PMID:15873
Abstract

The reaction cycle of bacteriorhodopsin in the purple membrane isolated from Halobacterium halobium has been studied by optical absorption spectroscopy using low-temperature and flash kinetic techniques. After absorption of light, bacteriohodopsin passes through at least five distinct intermediates. The temperature and pH dependence of the absorbance changes suggests that branch points and/or reversible steps exist in this cycle. Flash spectroscopy in the presence of a pH-indicating dye shows that the transient release of a proton accompanies the photoreaction cycle. The proton release occurs from the exterior and the uptake is on the cytoplasmic side of the membrane, as required by the function of bacteriorhodopsin as a light-driven proton pump. Proton translocating steps connecting release and uptake are indicated by deuterium isotope effects on the kinetics of the cycle. The rapid decay of a light-induced linear dichroism shows that a chromophore orientation change occurs during the reaction cycle.

摘要

利用低温和闪光动力学技术,通过光吸收光谱法研究了从嗜盐嗜盐菌中分离出的紫膜中细菌视紫红质的反应循环。吸收光后,细菌视紫红质至少会经历五个不同的中间体。吸光度变化对温度和pH的依赖性表明,该循环中存在分支点和/或可逆步骤。在存在pH指示染料的情况下进行的闪光光谱表明,质子的瞬时释放伴随着光反应循环。质子从膜的外部释放,而摄取发生在膜的细胞质一侧,这是细菌视紫红质作为光驱动质子泵的功能所要求的。氘同位素对循环动力学的影响表明了连接释放和摄取的质子转运步骤。光诱导线性二色性的快速衰减表明,在反应循环过程中发色团的取向发生了变化。

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