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Functional and shunt states of bacteriorhodopsin resolved by 250 GHz dynamic nuclear polarization–enhanced solid-state NMR

机译:250 GHz动态核电极化增强固态NMR解析细菌视紫红质的功能状态和分流状态

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摘要

Observation and structural studies of reaction intermediates of proteins are challenging because of the mixtures of states usually present at low concentrations. Here, we use a 250 GHz gyrotron (cyclotron resonance maser) and cryogenic temperatures to perform high-frequency dynamic nuclear polarization (DNP) NMR experiments that enhance sensitivity in magic-angle spinning NMR spectra of cryo-trapped photocycle intermediates of bacteriorhodopsin (bR) by a factor of ≈90. Multidimensional spectroscopy of U-13C,15N-labeled samples resolved coexisting states and allowed chemical shift assignments in the retinylidene chromophore for several intermediates not observed previously. The correlation spectra reveal unexpected heterogeneity in dark-adapted bR, distortion in the K state, and, most importantly, 4 discrete L substates. Thermal relaxation of the mixture of L's showed that 3 of these substates revert to bR568 and that only the 1 substate with both the strongest counterion and a fully relaxed 13-cis bond is functional. These definitive observations of functional and shunt states in the bR photocycle provide a preview of the mechanistic insights that will be accessible in membrane proteins via sensitivity-enhanced DNP NMR. These observations would have not been possible absent the signal enhancement available from DNP.
机译:蛋白质的反应中间体的观察和结构研究具有挑战性,因为状态混合物通常以低浓度存在。在这里,我们使用250 GHz回旋管(回旋共振主)和低温进行高频动态核极化(DNP)NMR实验,以增强细菌视紫红质(bR)的低温捕获光循环中间体的魔角旋转NMR光谱的敏感性。约90倍U-13C,15N标记的样品的多维光谱解析了共存状态,并允许在视黄叉发色团中化学位移指定为先前未观察到的几种中间体。相关光谱揭示了暗适应的bR中出乎意料的异质性,K状态下的畸变,最重要的是4个离散的L亚状态。 L混合物的热弛豫表明,这些亚状态中的3个还原为bR568,只有具有最强抗衡离子和完全松弛的13-顺式键的1个亚状态起作用。这些对bR光周期中功能状态和分流状态的确定性观察提供了机械洞察力的预览,这些洞察力将通过敏感性增强的DNP NMR在膜蛋白中获得。如果没有DNP提供的信号增强功能,这些观察将是不可能的。

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