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Incoherent Manipulation of the Photoactive Yellow Protein Photocycle with Dispersed Pump-Dump-Probe Spectroscopy

机译:分散泵浦-转储-探针光谱法对光活性黄色蛋白光循环的非相干操纵

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摘要

Photoactive yellow protein is the protein responsible for initiating the “blue-light vision” of Halorhodospira halophila. The dynamical processes responsible for triggering the photoactive yellow protein photocycle have been disentangled with the use of a novel application of dispersed ultrafast pump-dump-probe spectroscopy, where the photocycle can be started and interrupted with appropriately tuned and timed laser pulses. This “incoherent” manipulation of the photocycle allows for the detailed spectroscopic investigation of the underlying photocycle dynamics and the construction of a fully self-consistent dynamical model. This model requires three kinetically distinct excited-state intermediates, two (ground-state) photocycle intermediates, I0 and pR, and a ground-state intermediate through which the protein, after unsuccessful attempts at initiating the photocycle, returns to the equilibrium ground state. Also observed is a previously unknown two-photon ionization channel that generates a radical and an ejected electron into the protein environment. This second excitation pathway evolves simultaneously with the pathway containing the one-photon photocycle intermediates.
机译:光敏性黄色蛋白质是负责引发嗜盐嗜盐菌的“蓝光视觉”的蛋白质。通过使用分散的超快泵浦-转储-探针光谱学的新应用,可以弄清负责触发光敏黄色蛋白光循环的动力学过程,其中可以通过适当调整和定时的激光脉冲来启动和中断光循环。光周期的这种“非相干”操作可以对潜在的光周期动力学进行详细的光谱研究,并构建完全自洽的动力学模型。该模型需要三个动力学上不同的激发态中间体,两个(基态)光循环中间体I0和pR以及一个基态中间体,在不成功地启动光循环尝试之后,蛋白质可以通过该中间体返回平衡基态。还可以观察到以前未知的双光子电离通道,该通道会产生自由基和向电子环境中喷射的电子。该第二激发途径与包含单光子光循环中间体的途径同时发展。

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