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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Towards an interpretation of 13C chemical shifts in bathorhodopsin, a functional intermediate of a G-protein coupled receptor.
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Towards an interpretation of 13C chemical shifts in bathorhodopsin, a functional intermediate of a G-protein coupled receptor.

机译:走向对视紫红质(一种G蛋白偶联受体的功能性中间体)中的13C化学位移的解释。

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Photoisomerization of the membrane-bound light receptor protein rhodopsin leads to an energy-rich photostate called bathorhodopsin, which may be trapped at temperatures of 120 K or lower. We recently studied bathorhodopsin by low-temperature solid-state NMR, using in situ illumination of the sample in a purpose-built NMR probe. In this way we acquired (13)C chemical shifts along the retinylidene chain of the chromophore. Here we compare these results with the chemical shifts of the dark state chromophore in rhodopsin, as well as with the chemical shifts of retinylidene model compounds in solution. An earlier solid-state NMR study of bathorhodopsin found only small changes in the (13)C chemical shifts upon isomerization, suggesting only minor perturbations of the electronic structure in the isomerized retinylidene chain. This is at variance with our recent measurements which show much larger perturbations of the (13)C chemical shifts. Here we present a tentative interpretation of our NMR results involving an increased charge delocalization inside the polyene chain of the bathorhodopsin chromophore. Our results suggest that the bathochromic shift of bathorhodopsin is due to modified electrostatic interactions between the chromophore and the binding pocket, whereas both electrostatic interactions and torsional strain are involved in the energy storage mechanism of bathorhodopsin.
机译:膜结合的光受体蛋白视紫红质的光异构化导致称为浴视紫红质的能量丰富的光态,其可能在120 K或更低的温度下被捕获。最近,我们通过在专用NMR探针中对样品进行原位照射,通过低温固态NMR研究了视紫红质。通过这种方式,我们沿着发色团的视黄叉二烯链获得了(13)C化学位移。在这里,我们将这些结果与视紫红质中暗态发色团的化学位移,以及溶液中视黄叉基模型化合物的化学位移进行比较。早期的对视紫红质的固态NMR研究发现,异构化后(13)C化学位移只有很小的变化,这表明异构化的亚视黄叉链中的电子结构只有很小的扰动。这与我们最近的测量结果不同,后者的测量结果显示(13)C化学位移的扰动更大。在这里,我们对NMR结果进行了初步的解释,涉及到视紫红质生色团的多烯链内部电荷的离域增加。我们的结果表明,视紫红质的红移是由于生色团与结合口袋之间的静电相互作用发生了改变,而静电相互作用和扭转应变都参与了视紫红质的能量存储机制。

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