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Structural investigation of bacteriorhodopsin and some of its photoproducts by polarized Fourier transform infrared spectroscopic methods-difference spectroscopy and photoselection

机译:细菌视紫红质及其某些光产物的偏振傅里叶变换红外光谱-差光谱和光选择的结构研究

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摘要

The direction of selected IR-transition moments of the retinal chromophore of bacteriorhodopsin (BR) and functional active amino acid residues are determined for light- and dark-adapted BR and for the intermediates K and L of the photocycle. Torsions around single bonds of the chromophore are found to be present in all the investigated BR states. The number of twisted single bonds and the magnitude of these torsions decreases in the order K, L, light-adapted BR, dark-adapted BR. In the last, only the C14—C15 single bond is twisted. The orientation of molecular planes and chemical bonds of such protein side chains, which are perturbed during the transition of light-adapted BR to the respective intermediates, are deduced and the results compared with the current three dimensional model of BR. Trp 86 and Trp 185 are found to form a rigid part of the protein, whereas Asp 96 and Asp 115 perform molecular rearrangements upon formation of the L-intermediate.
机译:确定了适用于亮和暗适应性BR和光循环中间体K和L的细菌视紫红质(BR)视网膜发色团和功能性活性氨基酸残基的选定IR跃迁矩的方向。发现在所有研究的BR状态下,发色团单键周围都存在扭转。扭曲的单键的数量和这些扭转的幅度按K,L,浅色BR,深色BR的顺序减小。最后,只有C14-C15单键被扭曲。推导了在光适应性BR向相应中间体过渡过程中受到干扰的此类蛋白质侧链的分子平面取向和化学键,并将其结果与目前的BR三维模型进行了比较。发现Trp 86和Trp 185形成蛋白质的刚性部分,而Asp 96和Asp 115在形成L中间体时会进行分子重排。

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