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膜中的低频运动。胆固醇和蛋白质的作用。

Low-frequency motion in membranes. The effect of cholesterol and proteins.

作者信息

Cornell B A, Davenport J B, Separovic F

出版信息

Biochim Biophys Acta. 1982 Jul 28;689(2):337-45. doi: 10.1016/0005-2736(82)90267-x.

Abstract

Nuclear magnetic resonance (NMR) relaxation techniques have been used to study the effect of lipid-protein interactions on the dynamics of membrane lipids. Proton enhanced (PE) 13C-NMR measurements are reported for the methylene chain resonances in red blood cell membranes and their lipid extracts. For comparison similar measurements have been made of phospholipid dispersions containing cholesterol and the polypeptide gramicidin A+. It is found that the spin-lattice relaxation time in the rotating reference frame (T1 rho) is far more sensitive to protein, gramicidin A+ or cholesterol content than is the laboratory frame relaxation time (T1). Based on this data it is concluded that the addition of the second component to a lipid bilayer produces a low-frequency motion in the region of 10(5) to 10(7) Hz within the membrane lipid. The T1 rho for the superimposed resonance peaks derived from all parts of the phospholipid chain are all influenced in the same manner suggesting that the low frequency motion involves collective movements of large segments of the hydrocarbon chain. Because of the molecular co-operativity implied in this type of motion and the greater sensitivity of T1 rho to the effects of lipid-protein interactions generally, it is proposed that these low-frequency perturbations are felt at a greater distance from the protein than those at higher frequencies which dominate T1.

摘要

核磁共振(NMR)弛豫技术已被用于研究脂质 - 蛋白质相互作用对膜脂动力学的影响。本文报道了对红细胞膜及其脂质提取物中亚甲基链共振的质子增强(PE)13C - NMR测量结果。为作比较,对含有胆固醇和多肽短杆菌肽A +的磷脂分散体进行了类似测量。结果发现,旋转参考系中的自旋 - 晶格弛豫时间(T1ρ)比实验室坐标系弛豫时间(T1)对蛋白质、短杆菌肽A +或胆固醇含量更为敏感。根据这些数据得出结论,向脂质双层中添加第二种成分会在膜脂内产生10(5)至10(7)Hz范围内的低频运动。源自磷脂链所有部分的叠加共振峰的T1ρ均以相同方式受到影响,这表明低频运动涉及烃链大段的集体运动。由于这种运动类型所隐含的分子协同性以及T1ρ通常对脂质 - 蛋白质相互作用影响的更高敏感性,有人提出,与主导T1的高频扰动相比,这些低频扰动在距蛋白质更远的距离处就能感受到。

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