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脂质双分子层中双不饱和酰基链的分子运动与动力学:多不饱和脂肪酸在生物膜中的作用启示

Molecular motions and dynamics of a diunsaturated acyl chain in a lipid bilayer: implications for the role of polyunsaturation in biological membranes.

作者信息

Baenziger J E, Jarrell H C, Smith I C

机构信息

Institute for Biological Sciences, National Research Council of Canada, Ottawa, Ontario.

出版信息

Biochemistry. 1992 Apr 7;31(13):3377-85. doi: 10.1021/bi00128a011.

DOI:10.1021/bi00128a011
PMID:1554719
Abstract

The nature and dynamics of the motions of a diunsaturated fatty acyl chain in a lipid bilayer were examined using a comprehensive simulation program for 2H NMR line shapes developed by Wittebort et al. [Wittebort, R. J., Olejniczak, E. T., & Griffin, R. G. (1987) J. Chem. Phys. 36, 5411-5420]. A motional model in which the isolinoleoyl chain (18:2 delta 6,9) adopts two conformations consistent with the low energy structures proposed for 1,4-pentadiene [Applegate, K. R., & Glomset, J. A. (1986) J. Lipid Res. 27, 658-680], but undergoes a rapid jump between these states, is sufficient to account for the experimentally observed quadrupolar couplings, the 2H-2H and 1H-2H dipolar couplings, the longitudinal relaxation times, and the changes in the average conformation of the chain that occur with a variation in temperature. The jump motion originates via rotations about the C7-C8 and the C8-C9 carbon bonds and leads to the low order parameters assigned to the C8 methylene segment (0.18) and the C9-C10 double bond (0.11). In contrast, the C6-C7 double bond, which is not involved in the two-site jump, characterized by a relatively large order parameter (0.56). Fatty acyl chains containing three or more double bonds likely cannot undergo the same jump motion and consequently will be highly ordered structures. Correlation times for diffusion of the molecular long axis of the diunsaturated acyl chain about the bilayer normal (approximately 10(-10) s) and for the local jump motion (approximately 10(-10) s) were calculated.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用由维特博特等人开发的用于2H NMR线形的综合模拟程序,研究了脂质双层中双不饱和脂肪酰链的运动性质和动力学[维特博特,R. J.,奥莱伊尼扎克,E. T.,& 格里芬,R. G.(1987年)《化学物理杂志》36,5411 - 5420]。一种运动模型,其中异亚油酰链(18:2 δ6,9)采用与为1,4 - 戊二烯提出的低能量结构一致的两种构象[阿普尔盖特,K. R.,& 格洛姆塞特,J. A.(1986年)《脂质研究杂志》27,658 - 680],但在这些状态之间经历快速跳跃,足以解释实验观察到的四极耦合、2H - 2H和1H - 2H偶极耦合、纵向弛豫时间以及随着温度变化链的平均构象的变化。跳跃运动通过围绕C7 - C8和C8 - C9碳键的旋转产生,并导致分配给C8亚甲基段(0.18)和C9 - C10双键(0.11)的低序参数。相比之下,不参与双位点跳跃的C6 - C7双键,其序参数相对较大(0.56)。含有三个或更多双键的脂肪酰链可能无法经历相同的跳跃运动,因此将是高度有序的结构。计算了双不饱和酰链分子长轴围绕双层法线的扩散相关时间(约10^(-10) s)和局部跳跃运动的相关时间(约10^(-10) s)。(摘要截断于250字)

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