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Structure of an early intermediate in the M-state phase of the bacteriorhodopsin photocycle.

机译:细菌视紫红质光循环M态阶段早期中间体的结构。

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摘要

The structure of an early M-intermediate of the wild-type bacteriorhodopsin photocycle formed by actinic illumination at 230 K has been determined by x-ray crystallography to a resolution of 2.0 A. Three-dimensional crystals were trapped by illuminating with actinic light at 230 K, followed by quenching in liquid nitrogen. Amide I, amide II, and other infrared absorption bands, recorded from single bacteriorhodopsin crystals, confirm that the M-substate formed represents a structure that occurs early after deprotonation of the Schiff base. Rotation about the retinal C13-C14 double bond appears to be complete, but a relatively large torsion angle of 26 degrees is still seen for the C14-C15 bond. The intramolecular stress associated with the isomerization of retinal and the subsequent deprotonation of the Schiff base generates numerous small but experimentally measurable structural changes within the protein. Many of the residues that are displaced during the formation of the late M (M(N)) substate formed by three-dimensional crystals of the D96N mutant (Luecke et al., 1999b) are positioned, in early M, between their resting-state locations and the ones which they will adopt at the end of the M phase. The relatively small magnitude of atomic displacements observed in this intermediate, and the well-defined positions adopted by nearly all of the atoms in the structure, may make the formation of this structure favorable to model (simulate) by molecular dynamics.
机译:通过X射线晶体学测定分辨率为2.0 A,通过在230 K的光化光照下确定了野生型细菌视紫红质光循环的早期M中间体的结构。通过在230 K的光化光照下捕获了三维晶体K,然后在液氮中淬灭。从单个细菌视紫红质晶体记录的酰胺I,酰胺II和其他红外吸收带证实,形成的M亚态代表席夫碱去质子化后早期出现的结构。围绕视网膜C13-C14双键的旋转似乎已经完成,但是对于C14-C15键仍然看到相对较大的26度扭转角。与视网膜的异构化和随后的席夫碱去质子化相关的分子内应力在蛋白质内产生许多小的但实验上可测量的结构变化。许多由D96N突变体的三维晶体形成的晚期M(M(N))亚状态形成期间被置换的残基(Luecke等,1999b)位于M早期,位于它们的静息之间,状态位置,以及在M阶段结束时将采用的位置。在该中间体中观察到的相对较小的原子位移大小,以及结构中几乎所有原子采用的明确定义的位置,可能会使该结构的形成易于通过分子动力学建模(模拟)。

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