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人血小板亚细胞组分中磷脂、脂肪酸及血小板第3因子活性的分布

Distribution of phospholipids, fatty acids, and platelet factor 3 activity among subcellular fractions of human platelets.

作者信息

Broekman M J, Handin R I, Derksen A, Cohen P

出版信息

Blood. 1976 Jun;47(6):963-71.

PMID:1276478
Abstract

As compared with other methods, our recently reported method for subcellular fractionation of human platelets improves the separation of mitochondria, alpha granules, and lysosomal enzyme activities. The relative purity of these fractions has led us to undertake the present study to compare the subcellular distribution of phospholipids, fatty acids, and platelet factor 3 (clot-promoting) activity. Two findings pertaining to distribution of phospholipids were entirely new. (1) In the alpha granule zone, plasmalogen phosphatidyl ethanolamine peaked at the expense of diacyl phosphatidyl ethanolamine. (2) The fatty acid composition of the membrane lysophosphatidyl choline suggested that it may have been formed by the action of platelet phospholipase A2 activity. The fatty acids of the membranes showed a markedly asymmetrical distribution in noncholine versus choline phospholipids. The latter held 94%, 72%, and 85%, respectively, of the total content of 16:0, 18:1, and 18:2 fatty acids, whereas 55% of the 18:0, 72% of 20:4, and 67% of higher polyenoic acids other than 20:4 were esterified to the noncholine group. The most important new information related to clot-promoting activity, which, on the basis of protein content, was highest in the membrane fractions, but on the basis of phospholipid content in the nonmembranous fractions. The discussion centers on possible explanations for this novel finding.

摘要

与其他方法相比,我们最近报道的人血小板亚细胞分级分离方法改善了线粒体、α颗粒和溶酶体酶活性的分离。这些级分的相对纯度促使我们开展本研究,以比较磷脂、脂肪酸和血小板因子3(促凝)活性的亚细胞分布。两项关于磷脂分布的发现是全新的。(1)在α颗粒区,缩醛磷脂酰乙醇胺达到峰值,而二酰基磷脂酰乙醇胺减少。(2)膜溶血磷脂酰胆碱的脂肪酸组成表明,它可能是由血小板磷脂酶A2活性作用形成的。膜的脂肪酸在非胆碱磷脂与胆碱磷脂中呈现出明显的不对称分布。后者分别占16:0、18:1和18:2脂肪酸总量的94%、72%和85%,而18:0的55%、20:4的72%以及除20:4以外的其他高级多不饱和脂肪酸的67%被酯化到非胆碱基团。与促凝活性相关的最重要的新信息是,基于蛋白质含量,其在膜级分中最高,但基于磷脂含量则在非膜级分中最高。讨论集中在对这一新颖发现的可能解释上。

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