Pai J K, Siegel M I, Egan R W, Billah M M
Department of Allergy and Inflammation, Schering-Plough Corporation, Bloomfield, NJ 07003.
Biochem Biophys Res Commun. 1988 Jan 15;150(1):355-64. doi: 10.1016/0006-291x(88)90528-1.
Activation of phospholipase D (PLD) has been investigated in dimethylsulfoxide differentiated HL-60 granulocytes labeled in endogenous 1-0-alkyl-2-acyl-sn-glycero-3-phosphocholine (alkyl-PC) by incubation with [3H]alkyl-lysoPC. Stimulation of these labeled cells with the chemotactic peptide, N-formyl-Met-Leu-Phe (fMLP), induces rapid generation of [3H]phosphatidic acid (PA) and slower formation of [3H]diglyceride, suggesting hydrolysis of alkyl-PC by PLD. A unique feature of PLD is its ability to transfer the phosphatidyl moiety of phospholipids to alcohols (transphosphatidylation). This characteristic has been exploited to identify PLD activity. For example, when ethanol is present during stimulation of the HL-60 cells, [3H]phosphatidylethanol (PEt) is formed with a concomitant decrease in [3H]PA. Cells incubated with [32P]orthophosphate to label the terminal phosphate of ATP do not incorporate 32P into PEt, consistent with the [3H]PEt not being synthesized from [3H]diglyceride. In contrast, [3H]PA arises from both PLD and diglyceride kinase activities. Furthermore, PEt synthesis closely parallels PA formation and both are inhibited by an fMLP receptor antagonist, suggesting that both PA and PEt are derived from agonist-stimulated PLD action. These observations are consistent with phospholipase D-catalyzed breakdown of alkyl-PC in fMLP- stimulated granulocytes.
通过与[3H]烷基溶血磷脂酰胆碱孵育,在内源性1-0-烷基-2-酰基-sn-甘油-3-磷酸胆碱(烷基-PC)标记的二甲基亚砜分化HL-60粒细胞中研究了磷脂酶D(PLD)的激活情况。用趋化肽N-甲酰甲硫氨酸-亮氨酸-苯丙氨酸(fMLP)刺激这些标记细胞,可诱导[3H]磷脂酸(PA)快速生成以及[3H]甘油二酯生成较慢,这表明PLD可水解烷基-PC。PLD的一个独特特性是它能够将磷脂的磷脂酰部分转移至醇类(转磷脂酰基作用)。这一特性已被用于鉴定PLD活性。例如,当在刺激HL-60细胞期间存在乙醇时,会形成[3H]磷脂酰乙醇(PEt),同时[3H]PA减少。用[32P]正磷酸盐孵育细胞以标记ATP的末端磷酸,不会将32P掺入PEt中,这与[3H]PEt不是由[3H]甘油二酯合成一致。相反,[3H]PA由PLD和甘油二酯激酶活性共同产生。此外,PEt合成与PA形成密切平行,且两者均被fMLP受体拮抗剂抑制,这表明PA和PEt均源自激动剂刺激的PLD作用。这些观察结果与磷脂酶D催化fMLP刺激的粒细胞中烷基-PC的分解一致。