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血小板活化因子激活的人中性粒细胞中磷脂酸量的积累及甘油脂质从头合成的增加。

Accumulation of phosphatidic acid mass and increased de novo synthesis of glycerolipids in platelet-activating-factor-activated human neutrophils.

作者信息

Tou J, Jeter J R, Dola C P, Venkatesh S

机构信息

Department of Biochemistry, Tulane University School of Medicine, New Orleans, LA 70112.

出版信息

Biochem J. 1991 Dec 15;280 ( Pt 3)(Pt 3):625-9. doi: 10.1042/bj2800625.

Abstract

Incubation of human neutrophils with 100 nM-platelet-activating factor (PAF) but without cytochalasin B resulted in a rapid (5 s) accumulation (1.6-fold) of phosphatidic acid (PtdOH) mass. The increased PtdOH mass reached a maximum (2.8-fold) at 1 min and remained elevated (1.7-fold) at 10 min. No methylamine-stable lyso-PtdOH was detectable in the total lipid extract from control or from PAF-activated cells, suggesting that diacyl-PtdOH was the predominant species. In PAF-activated cells, changes in 1,2-diacylglycerol (DG) mass were not detectable at 5 or 15 s. Increased DG mass (1.7-fold) was detected between 30 s and 2 min, but then it declined to basal levels by 10 min. PAF enhanced [3H]glycerol incorporation into PtdOH and DG by 2- and 3-fold respectively during 1-10 min incubations. PAF also increased the radioactivity but not the mass of phosphatidylinositol and of choline glycerophospholipid by 8-fold and 4-fold respectively at 10 min. In addition, PAF-activated cells showed increased (2-fold) glycerol incorporation into triacylglycerol. These results demonstrate that PAF enhances rapid accumulation of diacyl-PtdOH mass, and that increased de novo synthesis may contribute to PtdOH mass accumulation.

摘要

将人类中性粒细胞与100 nM血小板活化因子(PAF)一起孵育,但不添加细胞松弛素B,导致磷脂酸(PtdOH)质量迅速(5秒)积累(1.6倍)。增加的PtdOH质量在1分钟时达到最大值(2.8倍),并在10分钟时保持升高(1.7倍)。在对照或PAF激活细胞的总脂质提取物中未检测到甲胺稳定的溶血磷脂酸,这表明二酰基磷脂酸是主要形式。在PAF激活的细胞中,在5秒或15秒时未检测到1,2-二酰基甘油(DG)质量的变化。在30秒至2分钟之间检测到DG质量增加(1.7倍),但到10分钟时又降至基础水平。在1 - 10分钟的孵育过程中,PAF分别使[3H]甘油掺入PtdOH和DG的量增加了2倍和3倍。在10分钟时,PAF还分别使磷脂酰肌醇和胆碱甘油磷脂的放射性增加了8倍和4倍,但质量未增加。此外,PAF激活的细胞显示甘油掺入三酰甘油的量增加(2倍)。这些结果表明,PAF增强了二酰基磷脂酸质量的快速积累,并且从头合成增加可能有助于磷脂酸质量的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d34/1130500/18877269202d/biochemj00145-0071-a.jpg

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