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首页> 外文期刊>Science Advances >Probing the photointermediates of light-driven sodium ion pump KR2 by DNP-enhanced solid-state NMR
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Probing the photointermediates of light-driven sodium ion pump KR2 by DNP-enhanced solid-state NMR

机译:通过DNP增强固态NMR探测光驱动钠离子泵KR2的光泵

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摘要

The functional mechanism of the light-driven sodium pump Krokinobacter eikastus rhodopsin 2 (KR2) raises fundamental questions since the transfer of cations must differ from the better-known principles of rhodopsin-based proton pumps. Addressing these questions must involve a better understanding of its photointermediates. Here, dynamic nuclear polarization–enhanced solid-state nuclear magnetic resonance spectroscopy on cryo-trapped photointermediates shows that the K-state with 13- cis retinal directly interconverts into the subsequent L-state with distinct retinal carbon chemical shift differences and an increased out-of-plane twist around the C14-C15 bond. The retinal converts back into an all-trans conformation in the O-intermediate, which is the key state for sodium transport. However, retinal carbon and Schiff base nitrogen chemical shifts differ from those observed in the KR2 dark state all- trans conformation, indicating a perturbation through the nearby bound sodium ion. Our findings are supplemented by optical and infrared spectroscopy and are discussed in the context of known three-dimensional structures.
机译:自阳离子的转移与基于罗地素的质子泵的更好原则不同,透光钠泵krookinobactereeikastus rosokastus rhokastus rhokastus rhokastus rhokastus rhokastus rhokastus rhokistus rhokistus rhokistus rhokistus rhokinobacters rhokinobacteros解决这些问题必须涉及更好地了解其光明。这里,冷冻捕获的光线内的动态核偏振增强固态核磁共振谱表明,具有13-顺式视网膜的K状态直接与随后的L状态相互转换为不同的视网膜碳化学变化差异,增加 - 在C14-C15键周围的平面扭曲。视网膜转化回O中间体中的全转体构象,这是钠运输的关键状态。然而,视网膜碳和席夫碱氮化学换算与KR2暗状态全转移构象中观察到的那些不同,表明通过附近结合的钠离子扰动。我们的发现由光学和红外光谱法补充,并且在已知的三维结构的背景下讨论。

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