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二十二碳六烯酸:一种独特脂肪酸的膜特性

Docosahexaenoic acid: membrane properties of a unique fatty acid.

作者信息

Stillwell William, Wassall Stephen R

机构信息

Department of Biology, Indiana University Purdue University Indianapolis, 723 W Michigan Street, Indianapolis, IN 46202-5132, USA.

出版信息

Chem Phys Lipids. 2003 Nov;126(1):1-27. doi: 10.1016/s0009-3084(03)00101-4.

Abstract

Docosahexaenoic acid (DHA) with 22-carbons and 6 double bonds is the extreme example of an omega-3 polyunsaturated fatty acid (PUFA). DHA has strong medical implications since its dietary presence has been positively linked to the prevention of numerous human afflictions including cancer and heart disease. The PUFA, moreover, is essential to neurological function. It is remarkable that one simple molecule has been reported to affect so many seemingly unrelated biological processes. Although details of a molecular mode of action remain elusive, DHA must be acting at a fundamental level common to many tissues that is related to the high degree of conformational flexibility that the multiple double bonds have been identified to confer. One likely target for DHA action is at the cell membrane where the fatty acid is known to readily incorporate into membrane phospholipids. Once esterified into phospholipids DHA has been demonstrated to significantly alter many basic properties of membranes including acyl chain order and "fluidity", phase behavior, elastic compressibility, permeability, fusion, flip-flop and protein activity. It is concluded that DHA's interaction with other membrane lipids, particularly cholesterol, may play a prominent role in modulating the local structure and function of cell membranes.

摘要

二十二碳六烯酸(DHA)含有22个碳原子和6个双键,是ω-3多不饱和脂肪酸(PUFA)的典型代表。DHA具有重要的医学意义,因为其在饮食中的存在与预防包括癌症和心脏病在内的多种人类疾病呈正相关。此外,这种多不饱和脂肪酸对神经功能至关重要。值得注意的是,据报道,一个简单的分子就能影响如此多看似不相关的生物过程。尽管分子作用模式的细节仍不清楚,但DHA必定在许多组织共有的基本层面上发挥作用,这与多个双键赋予的高度构象灵活性有关。DHA作用的一个可能靶点是细胞膜,已知这种脂肪酸很容易融入膜磷脂中。一旦酯化到磷脂中,DHA已被证明能显著改变膜的许多基本特性,包括酰基链顺序和“流动性”、相行为、弹性压缩性、渗透性、融合、翻转和蛋白质活性。可以得出结论,DHA与其他膜脂(特别是胆固醇)的相互作用可能在调节细胞膜的局部结构和功能方面发挥重要作用。

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