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多不饱和生物膜的催化氢化:对膜脂肪酸组成和物理性质的影响。

Catalytic hydrogenation of polyunsaturated biological membranes: effects on membrane fatty acid composition and physical properties.

作者信息

Logue J A, Vigh L, Joó F, Cossins A R

机构信息

School of Biological Sciences, University of Liverpool, UK.

出版信息

Biochim Biophys Acta. 1998 Jan 5;1368(1):41-51. doi: 10.1016/s0005-2736(97)00203-4.

Abstract

The relationship between phospholipid saturation and membrane physical structure in a complex, highly polyunsaturated biological membrane (trout liver microsomes) has been studied by the graded and specific hydrogenation of polyunsaturated fatty acids. The homogeneous catalyst Pd(QS)2 caused rapid and effective hydrogenation, increasing the proportion of saturated fatty acids from 20-30% up to 60%, without loss or fragmentation. Long chain, polyunsaturated fatty acids (20:5 omega 3, 22:6 omega 3) were rapidly converted to a large number of partially hydrogenated isomers, and ultimately to the fully saturated C20 or C22 fatty acids. C18 mono- and di-unsaturates showed slower rates of hydrogenation. Increased saturation was closely associated with an increased membrane physical order as determined by the fluorescence anisotropy probe, 1,6-diphenyl-1,3,5-hexatriene. However, extensive hydrogenation led to highly ordered membranes exhibiting a gel-liquid crystalline phase transition between 30 and 60 degrees C. Polyunsaturated membranes can thus be converted into partially or substantially saturated membranes with measurable phase structure without direct alteration of other membrane components. This offers a less equivocal means of assessing the influence of polyunsaturation upon membrane structure and function.

摘要

通过对多不饱和脂肪酸进行分级和特异性氢化,研究了复杂的、高度多不饱和生物膜(鳟鱼肝微粒体)中磷脂饱和度与膜物理结构之间的关系。均相催化剂Pd(QS)2能快速有效地进行氢化反应,使饱和脂肪酸的比例从20%-30%提高到60%,且不会造成损失或碎片化。长链多不饱和脂肪酸(20:5 ω3、22:6 ω3)迅速转化为大量部分氢化的异构体,并最终转化为完全饱和的C20或C22脂肪酸。C18单不饱和脂肪酸和双不饱和脂肪酸的氢化速率较慢。如通过荧光各向异性探针1,6-二苯基-1,3,5-己三烯所测定的,饱和度增加与膜物理有序性增加密切相关。然而,过度氢化会导致高度有序的膜在30至60摄氏度之间呈现凝胶-液晶相转变。因此,多不饱和膜可以转化为具有可测量相结构的部分或基本饱和的膜,而无需直接改变其他膜成分。这为评估多不饱和对膜结构和功能的影响提供了一种更明确的方法。

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