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一种膜蛋白的核磁共振结构分析:细菌视紫红质的肽主链取向与运动

NMR structural analysis of a membrane protein: bacteriorhodopsin peptide backbone orientation and motion.

作者信息

Lewis B A, Harbison G S, Herzfeld J, Griffin R G

出版信息

Biochemistry. 1985 Aug 13;24(17):4671-9. doi: 10.1021/bi00338a029.

DOI:10.1021/bi00338a029
PMID:4063350
Abstract

In reconstituted vesicles above the lipid phase transition temperature, bacteriorhodopsin (BR) undergoes rotational diffusion about an axis perpendicular to the plane of the bilayer [Cherry, R. J., Muller, U., & Schneider, G. (1977) FEBS Lett. 80, 465]. This diffusion narrows the 13C NMR powder line shape of the BR peptide carbonyls. In contrast, BR in native purple membrane is relatively immobile and exhibits a rigid-lattice powder line shape. By use of the principal values of the rigid-lattice chemical shift tensor and the motionally narrowed line shape from the reconstituted system, the range of Euler angles of the leucine peptide groups relative to the diffusion axis has been calculated. The experimentally observed line shape is inconsistent with those expected for structures which consist entirely of either alpha helix or beta sheet perpendicular to the membrane or beta sheet tilted at angles up to about 60 degrees from the membrane normal. However, for two more complex structural models, the predicted line shapes agree well with the experimental one. These are, first, a structure consisting entirely of alpha1 helices tilted at 20 degrees from the membrane normal and, second, a combination of 60% alpha II helix perpendicular to the membrane plane and 40% antiparallel beta sheet tilted at 10-20 degrees from the membrane normal. The results also indicate that the peptide backbone of bacteriorhodopsin in native purple membrane is extremely rigid even at 40 degrees. The experiments presented here demonstrate a new approach, using solid-state nuclear magnetic resonance (NMR) methods, for structural studies of transmembrane proteins in fluid membrane environments, either natural or reconstituted.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在高于脂质相变温度的重构囊泡中,细菌视紫红质(BR)围绕垂直于双层膜平面的轴进行旋转扩散[Cherry, R. J., Muller, U., & Schneider, G. (1977) FEBS Lett. 80, 465]。这种扩散使BR肽羰基的13C NMR粉末线形状变窄。相比之下,天然紫膜中的BR相对固定,呈现刚性晶格粉末线形状。利用刚性晶格化学位移张量的主值以及重构系统中运动变窄的线形状,已计算出亮氨酸肽基团相对于扩散轴的欧拉角范围。实验观察到的线形状与完全由垂直于膜的α螺旋或β折叠组成,或与膜法线倾斜角度高达约60度的β折叠组成的结构所预期的线形状不一致。然而,对于另外两个更复杂的结构模型,预测的线形状与实验结果吻合良好。首先,是一个完全由与膜法线倾斜20度的α1螺旋组成的结构;其次,是由60%垂直于膜平面的αII螺旋和40%与膜法线倾斜10 - 20度的反平行β折叠组成的结构。结果还表明,即使在40摄氏度时,天然紫膜中细菌视紫红质的肽主链也极其刚性。本文介绍的实验展示了一种使用固态核磁共振(NMR)方法对天然或重构的流体膜环境中的跨膜蛋白进行结构研究的新方法。(摘要截短于250字)

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