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Membrane protein structure from rotational diffusion

机译:旋转扩散膜蛋白结构

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The motional averaging of powder pattern line shapes is one of the most fundamental aspects of sold-state NMR. Since membrane proteins in liquid crystalline phospholipid bilayers undergo fast rotational diffusion, all of the signals reflect the angles of the principal axes of their dipole-dipole and chemical shift tensors-with respect to the axis defined by the bilayer normal. The frequency span and sign of the axially symmetric powder patterns that result from motional averaging about a common axis provide sufficient structural restraints for the calculation of the three-dimensional structure of a membrane protein in a phospholipid bilayer environment. The method is referred to as rotationally aligned (RA) solid-state NMR and demonstrated with results on full-length, unmodified membrane proteins with one, two, and seven trans-membrane helices. RA solid-state NMR is complementary to other solid-state NMR methods, in particular oriented sample (OS) solid-state NMR of stationary, aligned samples. Structural distortions of membrane proteins from the truncations of terminal residues and other sequence modifications, and the use of detergent micelles instead of phospholipid bilayers have also been demonstrated. Thus, it is highly advantageous to determine the structures of unmodified membrane proteins in liquid crystalline phospholipid bilayers under physiological conditions. RA solid-state NMR provides a general method for obtaining accurate and precise structures of membrane proteins under near-native conditions. This article is part of a Special Issue entitled: NMR Spectroscopy for Atomistic Views of Biomembranes and Cell Surfaces. Guest Editors: Lynette Cegelski and David P. Weliky. (C) 2014 Elsevier B.V. All rights reserved.
机译:粉末图案线条形状的运动平均是销售态NMR的最基本方面之一。由于液晶磷脂双层中的膜蛋白会经历快速的旋转扩散,因此所有信号均反映其偶极-偶极和化学位移张量的主轴相对于双层法线定义的轴的角度。由围绕共同轴的运动平均产生的轴向对称粉末图案的频率跨度和符号为磷脂双层环境中膜蛋白的三维结构的计算提供了足够的结构约束。该方法称为旋转比对(RA)固态NMR,并通过具有一个,两个和七个跨膜螺旋的全长未修饰膜蛋白进行了结果验证。 RA固态NMR是其他固态NMR方法的补充,特别是固定对齐的样品的定向样品(OS)固态NMR。还证实了末端残基的截断和其他序列修饰导致膜蛋白的结构变形,以及使用去污剂胶束代替磷脂双层。因此,在生理条件下确定液晶磷脂双层中未修饰的膜蛋白的结构是非常有利的。 RA固态NMR提供了一种在接近天然条件下获得准确准确的膜蛋白结构的通用方法。本文是《特刊》的一部分,该刊物的标题为:NMR光谱用于生物膜和细胞表面的原子观。客座编辑:Lynette Cegelski和David P. Weliky。 (C)2014 Elsevier B.V.保留所有权利。

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