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α,ε-15N标记的牛视紫红质的固态和溶液核磁共振联合研究

Combined solid state and solution NMR studies of alpha,epsilon-15N labeled bovine rhodopsin.

作者信息

Werner Karla, Lehner Ines, Dhiman Harpreet Kaur, Richter Christian, Glaubitz Clemens, Schwalbe Harald, Klein-Seetharaman Judith, Khorana H Gobind

机构信息

Center for Biomolecular Magnetic Resonance, Johann Wolfgang Goethe-Universität Frankfurt, Max-von-Laue-Str. 7, 60438 Frankfurt/Main, Germany.

出版信息

J Biomol NMR. 2007 Apr;37(4):303-12. doi: 10.1007/s10858-007-9143-0. Epub 2007 Feb 23.

Abstract

Rhodopsin is the visual pigment of the vertebrate rod photoreceptor cell and is the only member of the G protein coupled receptor family for which a crystal structure is available. Towards the study of dynamics in rhodopsin, we report NMR-spectroscopic investigations of alpha,epsilon-15N-tryptophan labeled rhodopsin in detergent micelles and reconstituted in phospholipids. Using a combination of solid state 13C,15N-REDOR and HETCOR experiments of all possible 13C'(i-1) carbonyl/15N(i)-tryptophan isotope labeled amide pairs, and H/D exchange 1H,15N-HSQC experiments conducted in solution, we assigned chemical shifts to all five rhodopsin tryptophan backbone 15N nuclei and partially to their bound protons. 1H,15N chemical shift assignment was achieved for indole side chains of Trp35(1.30) and Trp175(4.65). 15N chemical shifts were found to be similar when comparing those obtained in the native like reconstituted lipid environment and those obtained in detergent micelles for all tryptophans except Trp175(4.65) at the membrane interface. The results suggest that the integrated solution and solid state NMR approach presented provides highly complementary information in the study of structure and dynamics of large membrane proteins like rhodopsin.

摘要

视紫红质是脊椎动物视杆光感受器细胞的视觉色素,是G蛋白偶联受体家族中唯一具有晶体结构的成员。为了研究视紫红质的动力学,我们报告了在去污剂胶束中以及重构于磷脂中的α,ε-15N-色氨酸标记的视紫红质的核磁共振光谱研究。通过结合所有可能的13C'(i - 1)羰基/15N(i)-色氨酸同位素标记酰胺对的固态13C、15N-REDOR和HETCOR实验,以及在溶液中进行的H/D交换1H、15N-HSQC实验,我们为视紫红质的所有五个色氨酸主链15N核及其部分结合质子指定了化学位移。对于Trp35(1.30)和Trp175(4.65)的吲哚侧链实现了1H、15N化学位移指定。在比较除膜界面处的Trp175(4.65)之外的所有色氨酸在天然样重构脂质环境中获得的化学位移和在去污剂胶束中获得的化学位移时,发现15N化学位移相似。结果表明,所提出的综合溶液和固态核磁共振方法在研究像视紫红质这样的大型膜蛋白的结构和动力学方面提供了高度互补的信息。

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