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脑苷脂和磷脂 - 胆固醇双层膜中各向异性的2H核磁共振自旋 - 晶格弛豫

Anisotropic 2H-nuclear magnetic resonance spin-lattice relaxation in cerebroside- and phospholipid-cholesterol bilayer membranes.

作者信息

Siminovitch D J, Ruocco M J, Olejniczak E T, Das Gupta S K, Griffin R G

机构信息

Francis Bitter National Magnet Laboratory, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Biophys J. 1988 Sep;54(3):373-81. doi: 10.1016/S0006-3495(88)82970-9.

Abstract

The axially symmetric powder pattern 2H-nuclear magnetic resonance (NMR) lineshapes observed in the liquid crystalline phase of pure lipid or lipid/cholesterol bilayers are essentially invariant to temperature, or, equivalently, to variations in the correlation times characterizing C-2H bond reorientations. In either of these melted phases, where correlation times for C-2H bond motions are shorter than 10(-7) s, information on the molecular dynamics of the saturated hydrocarbon chain would be difficult to obtain using lineshape analyses alone, and one must resort to other methods, such as the measurement of 2H spin-lattice relaxation rates, in order to obtain dynamic information. In pure lipid bilayers, the full power of the spin-lattice relaxation technique has yet to be realized, since an important piece of information, namely the orientation dependence of the 2H spin-lattice relaxation rates is usually lost due to orientational averaging of T1 by rapid lateral diffusion. Under more favorable circumstances, such as those encountered in the lipid/cholesterol mixtures of this study, the effects of orientational averaging by lateral diffusion are nullified, due to either a marked reduction (by at least an order of magnitude) in the diffusion rate, or a marked increase in the radii of curvature of the liposomes. In either case, the angular dependence of 2H spin-lattice relaxation is accessible to experimental study, and can be used to test models of molecular dynamics in these systems. Simulations of the partially recovered lineshapes indicate that the observed T1 anisotropies are consistent with large amplitude molecular reorientation of the C-2H bond among a finite number of sites. Furthermore, from the observed orientation dependence of the 2H spin-lattice relaxation rates, we conclude that order director fluctuations cannot provide the dominant relaxation pathway for acyl chain deuterons.

摘要

在纯脂质或脂质/胆固醇双层膜的液晶相中观察到的轴对称粉末图案2H核磁共振(NMR)线形基本上与温度无关,或者等效地,与表征C-2H键重取向的相关时间变化无关。在这两种熔融相中,C-2H键运动的相关时间都短于10^(-7) s,仅使用线形分析很难获得饱和烃链分子动力学的信息,因此必须采用其他方法,例如测量2H自旋晶格弛豫率,以获取动力学信息。在纯脂质双层膜中,自旋晶格弛豫技术的全部威力尚未实现,因为一条重要信息,即2H自旋晶格弛豫率的取向依赖性通常会因快速横向扩散导致的T1取向平均而丢失。在更有利的情况下,例如本研究中脂质/胆固醇混合物中遇到的情况,横向扩散引起的取向平均效应会被消除,这是由于扩散速率显著降低(至少一个数量级)或脂质体曲率半径显著增加。在这两种情况下,2H自旋晶格弛豫的角度依赖性都可以通过实验研究获得,并可用于测试这些系统中的分子动力学模型。对部分恢复的线形的模拟表明,观察到的T1各向异性与C-2H键在有限数量位点之间的大幅度分子重取向一致。此外,从观察到的2H自旋晶格弛豫率的取向依赖性,我们得出结论,有序指向矢涨落不能为酰基链氘核提供主要的弛豫途径。

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