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长期喂食乙醇的小型猪中,δ6和δ5去饱和酶活性选择性降低,但δ9去饱和酶活性未降低。

Selective reduction of delta 6 and delta 5 desaturase activities but not delta 9 desaturase in micropigs chronically fed ethanol.

作者信息

Nakamura M T, Tang A B, Villanueva J, Halsted C H, Phinney S D

机构信息

Division of Clinical Nutrition and Metabolism, School of Medicine, University of California, Davis 95616.

出版信息

J Clin Invest. 1994 Jan;93(1):450-4. doi: 10.1172/JCI116981.

Abstract

This study investigated the mechanism by which chronic ethanol feeding reduces arachidonate and other highly unsaturated fatty acids in pig liver phospholipids. Five micropigs were fed a diet providing 89 kcal/kg body wt for 12 mo, with ethanol and fat as 40 and 34% of energy, respectively. Five control pigs were pairfed corn starch instead of ethanol. The activities of delta 6 and delta 5 desaturases (expressed as microsomal conversion of precursor to product) in liver from ethanol-fed pigs were reduced to less than half that of controls, whereas the activity of delta 9 desaturase was unaffected in the ethanol group. delta 5 Desaturase activity showed positive correlation with the abundance of its products in liver total phospholipids and microsomes in the ethanol group, but not in the controls. Correlation between delta 6 desaturase activity and its products showed similar pattern to that of delta 5 desaturase, but did not reach statistical significance. No difference was observed between the two groups in coenzyme A concentration in the liver. These results suggest that the selective reduction of delta 6 and delta 5 desaturase activities, not the microsomal electron transport system, are directly responsible for the altered profile of liver phospholipids.

摘要

本研究调查了长期喂食乙醇导致猪肝磷脂中花生四烯酸和其他高度不饱和脂肪酸减少的机制。五只小型猪以提供89千卡/千克体重的日粮喂养12个月,乙醇和脂肪分别占能量的40%和34%。五只对照猪以玉米淀粉替代乙醇进行配对喂养。喂食乙醇的猪肝脏中δ6和δ5去饱和酶的活性(以前体向产物的微粒体转化率表示)降至对照组的一半以下,而乙醇组中δ9去饱和酶的活性未受影响。在乙醇组中,δ5去饱和酶活性与其在肝脏总磷脂和微粒体中的产物丰度呈正相关,但在对照组中并非如此。δ6去饱和酶活性与其产物之间的相关性与δ5去饱和酶相似,但未达到统计学意义。两组肝脏中辅酶A浓度未观察到差异。这些结果表明,δ6和δ5去饱和酶活性的选择性降低,而非微粒体电子传递系统,直接导致了肝脏磷脂谱的改变。

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