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Structural changes in bacteriorhodopsin during the photocycle measured by time-resolved polarized Fourier transform infrared spectroscopy.

机译:通过时间分辨偏振傅里叶变换红外光谱法测量的光周期中细菌视紫红质的结构变化。

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摘要

The structural changes in bacteriorhodopsin during the photocycle are investigated. Time resolved polarized infrared spectroscopy in combination with photoselection is used to determine the orientation and motion of certain structural units of the molecule: Asp-85, Asp-96, Asp-115, the Schiff base, and several amide I vibrations. The results are compared with recently published x-ray diffraction data with atomic resolution about conformational motions during the photocycle. The orientation of the measured vibrations are also calculated from the structure data, and based on the comparison of the values from the two techniques new information is obtained: several amide I bands in the infrared spectrum are assigned, and we can also identify the position of the proton in the protonated Asp residues.
机译:研究了细菌视紫红质在光循环过程中的结构变化。时间分辨偏振红外光谱结合光选择法可用于确定分子某些结构单元的方向和运动:Asp-85,Asp-96,Asp-115,席夫碱和几种酰胺I振动。将结果与最近发布的具有关于光循环期间构象运动的原子分辨率的x射线衍射数据进行比较。还从结构数据中计算出测得的振动的方向,并基于两种技术值的比较,获得了新的信息:分配了红外光谱中的多个酰胺I谱带,我们还可以确定质子化的Asp残基中的质子。

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