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Identification of intermediate conformations in the photocycle of the light-driven sodium-pumping rhodopsin KR2

机译:识别光电驱动钠泵罗多蛋白KR2的光循环中的中间构象

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摘要

The light-driven rhodopsin KR2 transports Na+via the M- and O-states. However, the mechanisms by which the retinal regulates Na+ pumping is unknown, in part because KR2 adopts both pentamer and monomer forms in crystal structures and in part because these structures show differences in the protein conformation near the Schiff base, even when they are of the same intermediate state within the photocycle. A particular open question is the nature of the H-bond networks and protonation state in the active site, including Asp116. Here, we analyze the protonation state and the absorption wavelength for each crystal structure, using a quantum mechanical/molecular mechanical approach. In the pentamer ground state, the calculated absorption wavelength reproduces the experimentally measured absorption wavelength (530 nm). The analysis also shows that ionized Asp116 is stabilized by the H-bond donations of both Ser70 and a cluster of water molecules. The absorption wavelength of 400 nm in the M-state can be best reproduced when the two O atoms of Asp116 interact strongly with the Schiff base, as reported in one of the previous monomer ground state structures. The absorption wavelengths calculated for the two Na+-incorporated O-state structures are consistent with the measured absorption wavelength (∼600 nm), which suggests that two conformations represent the O-state. These results may provide a key to designing enhanced tools in optogenetics.
机译:通过M-and O态传输Na +的光驱动罗枯。然而,视网膜调节Na +泵送的机制是未知的,部分原因是KR2采用晶体结构中的五聚体和单体形式,部分原因是这些结构表明席克夫基地附近的蛋白质构象的差异,即使它们是在光细胞内相同的中间状态。一个特定的开放问题是活性站点中的H键网络和质子化状态的性质,包括ASP116。这里,我们使用量子机械/分子机械方法分析质子化状态和每个晶体结构的吸收波长。在五聚体地面,计算的吸收波长再现实验测量的吸收波长(530nm)。分析还表明,通过SER70和水分子簇的H键捐献来稳定电离的ASP116。当ASP116的两个O原子与Schiff基底强烈相互作用时,可以最好地再现在M状态中的吸收波长,如先前的单体地面结构中的一个。为两个Na +--inclated O-状态结构计算的吸收波长与测量的吸收波长(〜600nm)一致,这表明两个构象代表O-状态。这些结果可以为设计光源中的增强工具提供关键。

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