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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Photodynamics of All-trans Retinal Protonated Schiff Base in Bacteriorhodopsin and Methanol Solution
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Photodynamics of All-trans Retinal Protonated Schiff Base in Bacteriorhodopsin and Methanol Solution

机译:全反式质子化席夫碱在细菌视紫红质和甲醇溶液中的光动力学

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摘要

Nonadiabatic ONIOM(CASSCF:AMBER) and CASSCF simulations elucidated different photodynamics of an all-trans retinal protonated Schiff base (RPSB) in bacteriorhodopsin and methanol as well as without an environment. The bR protein matrix holds RPSB tight via specific interactions and promotes bond-specific (along the C13=C14 bond), unidirectional, and ultrafast photoisomerization with a high quantum yield. In contrast, in methanol and for the twisted bare RPSB, photoisomerization is not bond-specific (mainly along the C11=C12 bond), is nonunidirectional, and is ineffective. Therefore, bR efficiently "catalyzes" photoisomerization and stores enough energy to promote the subsequent proton pumping and protein conformational changes.
机译:非绝热ONIOM(CASSCF:AMBER)和CASSCF模拟阐明了细菌视紫红质和甲醇中以及在没有环境的情况下全反式视网膜质子化席夫碱(RPSB)的不同光动力学。 bR蛋白基质通过特异性相互作用将RPSB保持紧密,并以高量子产率促进键特异性(沿C13 = C14键),单向和超快速光异构化。相反,在甲醇和扭曲的裸露RPSB中,光异构化不是特定于键的(主要是沿C11 = C12键),是非单向的,并且无效。因此,bR有效地“催化”了光异构化并存储了足够的能量以促进随后的质子泵送和蛋白质构象变化。

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