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Structural Transition of Bacteriorhodopsin Is Preceded by Deprotonation of Schiff Base: Microsecond Time-Resolved X-Ray Diffraction Study of Purple Membrane

机译:细菌视紫红质的结构转变先于席夫碱的去质子化:紫色膜的微秒时间分辨X射线衍射研究

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摘要

The structural changes in the photoreaction cycle of bacteriorhodopsin, a light-driven proton pump, was investigated at a resolution of 7 Å by a time-resolved x-ray diffraction experiment utilizing synchrotron x rays from an undulator of SPring-8. The x-ray diffraction measurement system, used in coupling with a pulsed YAG laser, enabled us to record a diffraction pattern from purple membrane film at a time-resolution of 6 μs over the time domain of 5 μs to 500 ms. In the time domain, the functionally most important M-intermediate appears. A series of time-resolved x-ray diffraction data after photo-excitation showed clear intensity changes caused by the conformational changes of helix G in the M-intermediate. The population of the reaction intermediate was prominently observed at ∼5 ms after a photo-stimulus. In contrast, absorption measurement indicated the deprotonation of the Schiff base predominantly occurred at ∼300 μs after a photo-stimulus. These results showed that the conformational changes characterizing structurally the M-intermediate predominantly occur at a later stage of the deprotonation of the Schiff base. Thus, the M-intermediate can be divided into two metastable stages with different physical characteristics.
机译:细菌视紫红质(一种光驱动质子泵)的光反应循环的结构变化是通过时间分辨的X射线衍射实验,使用SPring-8波动仪的同步加速器X射线以7Å的分辨率进行研究的。与脉冲YAG激光器耦合使用的X射线衍射测量系统使我们能够在5μs至500 ms的时域内以6μs的时间分辨率记录紫色膜薄膜的衍射图。在时域中,出现了功能最重要的M-中间体。激发后的一系列时间分辨的X射线衍射数据显示,明显的强度变化是由M中间体中的螺旋G的构象变化引起的。在光刺激后约5 ms处显着观察到反应中间体的填充。相比之下,吸收测量表明席夫碱的去质子化主要发生在光刺激后约300μs处。这些结果表明,结构上表征M-中间体的构象变化主要发生在席夫碱去质子化的后期。因此,M-中间体可以分为具有不同物理特性的两个亚稳态阶段。

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