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A residue substitution near the beta-ionone ring of the retinal affects the M substates of bacteriorhodopsin.

机译:视网膜的β-紫罗兰酮环附近的残基取代影响细菌视紫红质的M个亚状态。

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摘要

The switch in the bacteriorhodopsin photocycle, which reorients access of the retinal Schiff base from the extracellular to the cytoplasmic side, was suggested to be an M1----M2 reaction (Váró and Lanyi. 1991. Biochemistry. 30:5008-5015, 5016-5022). Thus, in this light-driven proton pump it is the interconversion of proposed M substates that gives direction to the transport. We find that in monomeric, although not purple membrane-lattice immobilized, D115N bacteriorhodopsin, the absorption maximum of M changes during the photocycle: in the time domain between its rise and decay it shifts 15 nm to the blue relative to the spectrum at earlier times. This large shift strongly supports the existence of two M substates. Since D115 is located near the beta-ionone ring of the retinal, the result raises questions about the possible involvement of the retinal chain or protein residues as far away as 10 A from the Schiff base in the mechanism of the switching reaction.
机译:细菌视紫红质光循环中的开关将视网膜席夫碱从细胞外转移到细胞质侧,这被认为是M1–M2反应(Váró和Lanyi。1991. Biochemistry。30:5008-5015, 5016-5022)。因此,在这种光驱动质子泵中,正是所提出的M个子状态的相互转换为运输提供了方向。我们发现在D115N细菌视紫红质(尽管不是固定的紫色膜格)单体中,M的吸收最大值在光循环期间发生变化:在其上升和下降之间的时域中,相对于较早的光谱,M的吸收波长向蓝色偏移15 nm 。这种大的变化强烈支持两个M子状态的存在。由于D115位于视网膜的β-紫罗兰酮环附近,因此该结果引起了人们的疑问,即视网膜链或蛋白质残基可能距Schiff碱基最远10 A参与了转换反应的机制。

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