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Role of group VIA calcium-independent phospholipase A2 in arachidonic acid release, phospholipid fatty acid incorporation, and apoptosis in U937 cells responding to hydrogen peroxide

机译:VIA组钙独立的磷脂酶A2在响应过氧化氢的U937细胞中花生四烯酸释放,磷脂脂肪酸掺入和细胞凋亡中的作用

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摘要

Group VIA calcium-independent phospholipase A2 (iPLA 2) has been shown to play a major role in regulating basal phospholipid deacylation reactions in certain cell types. More recently, roles for this enzyme have also been suggested in the destruction of membrane phospholipid during apoptosis and after oxidant injury. Proposed iPLA 2 roles have rested heavily on the use of bromoenol lactone as an iPLA2-specific inhibitor, but this compound actually inhibits other enzymes and lipid pathways unrelated to PLA2, which makes it difficult to define the contribution of iPLA2 to specific functions. In previous work, we pioneered the use of antisense technology to decrease cellular iPLA2 activity as an alternative approach to study iPLA 2 functions. In the present study, we followed the opposite strategy and prepared U937 cells that exhibited enhanced iPLA2 activity by stably expressing a plasmid containing iPLA2 cDNA. Compared with control cells, the iPLA2-overexpressing U937 cells showed elevated responses to hydrogen peroxide with regard to both arachidonic acid mobilization and incorporation of the fatty acid into phospholipids, thus providing additional evidence for the key role that iPLA2 plays in these events. Long-term exposure of the cells to hydrogen peroxide resulted in cell death by apoptosis, and this process was accelerated in the iPLA 2-overexpressing cells. Increased phospholipid hydrolysis and fatty acid release also occurred in these cells. Unexpectedly, however, abrogation of U937 cell iPLA2 activity by either methyl arachidonyl fluorophosphonate or an antisense oligonucleotide did not delay or decrease the extent of apoptosis induced by hydrogen peroxide. These results indicate that, although iPLA2-mediated phospholipid hydrolysis occurs during apoptosis, iPLA2 may actually be dispensable for the apoptotic process to occur. Thus, beyond a mere destructive role, iPLA2 may play other roles during apoptosis.
机译:在某些细胞类型中,VIA组不依赖钙的磷脂酶A2(iPLA 2)在调节基础磷脂脱酰反应中起主要作用。最近,还提出了这种酶在细胞凋亡过程中和氧化损伤后破坏膜磷脂的作用。拟议的iPLA 2作用主要取决于使用溴烯醇内酯作为iPLA2特异性抑制剂,但该化合物实际上抑制了与PLA2不相关的其他酶和脂质途径,这使得难以确定iPLA2对特定功能的贡献。在以前的工作中,我们率先使用反义技术来降低细胞iPLA2的活性,作为研究iPLA 2功能的替代方法。在本研究中,我们遵循相反的策略,并通过稳定表达含有iPLA2 cDNA的质粒来制备具有增强的iPLA2活性的U937细胞。与对照细胞相比,过表达iPLA2的U937细胞在花生四烯酸动员和脂肪酸掺入磷脂方面均表现出对过氧化氢的增强反应,从而为iPLA2在这些事件中发挥的关键作用提供了更多证据。细胞长期暴露于过氧化氢导致细胞通过凋亡而死亡,并且在过表达iPLA 2的细胞中加速了该过程。这些细胞中也发生磷脂水解和脂肪酸释放增加。但是,出乎意料的是,花生四烯酸基氟膦酸甲酯或反义寡核苷酸可废除U937细胞iPLA2活性,不会延迟或降低过氧化氢诱导的细胞凋亡程度。这些结果表明,尽管在凋亡过程中发生了iPLA2介导的磷脂水解,但是iPLA2实际上对于凋亡过程的发生可能是必不可少的。因此,iPLA2不仅具有破坏作用,而且在凋亡过程中可能还发挥其他作用。

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