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Ca2+-independent PLA2 controls endothelial store-operated Ca2+ entry and vascular tone in intact aorta

机译:不依赖于Ca2 +的PLA2控制完整主动脉中的内皮存储操作的Ca2 +进入和血管张力

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Ca2+-independent PLA2 controls endothelial store-operated Ca2+ entry and vascular tone in intact aorta. Am J Physiol Heart Circ Physiol 295: H2466-H2474, 2008. First published October 24,2008; doi:10.1152/ajpheart.00639.2008.桪uring an agonist stimulation of endothelial cells, the sustained Ca2+ entry occurring through store-operated channels has been shown to significantly contribute to smooth muscle relaxation through the release of relaxing factors such as nitric oxide (NO). However, the mechanisms linking Ca2+ stores depletion to the opening of such channels are still elusive. We have used Ca2+ and tension measurements in intact aortic strips to investigate the role of the Ca2+-independent isoform of phospholipase A2 (iPLA2) in endothelial store-operated Ca2+ entry and endothelium-dependent relaxation of smooth muscle. We provide evidence that iPLA2 is involved in the activation of endothelial store-operated Ca2+ entry when Ca2+ stores are artificially depleted. We also show that the sustained store-operated Ca2+ entry occurring during physiological stimulation of endothelial cells with the circulating hormone ATP is due to iPLA2 activation and significantly contributes to the amplitude and duration of ATP-induced endothelium-dependent relaxation. Consistently, both iPLA2 metabolites ar-achidonic acid and lysophosphatidylcholine were found to stimulate Ca2+ entry in native endothelial cells. However, only the latter triggered endothelium-dependent relaxation through NO release, suggesting that lysophosphatidylcholine produced by iPLA2 upon Ca2+ stores depletion may act as an intracellular messenger that stimulates store-operated Ca2+ entry and subsequent NO production in endothelial cells. Finally, we found that ACh-induced endothelium relaxation also depends on iPLA2 activation, suggesting that the iPLA2-depen-dent control of endothelial store-operated Ca2+ entry is a key physiological mechanism regulating arterial tone#
机译:不依赖Ca2 +的PLA2控制完整主动脉中的内皮存储操作的Ca2 +进入和血管张力。 Am J Physiol Heart Circ Physiol 295:H2466-H2474,2008年。2008年10月24日首次发布; doi:10.1152 / ajpheart.00639.2008。通过内皮细胞激动剂刺激,通过存储操纵通道发生的持续Ca2 +进入通过释放一氧化氮(NO)等松弛因子而显着促进平滑肌松弛。然而,将Ca 2+储存耗竭与此类通道的开放联系起来的机制仍然难以捉摸。我们已经在完整的主动脉带中使用Ca2 +和张力测量来研究磷脂酶A2(iPLA2)的不依赖Ca2 +的同工型在内皮存储操作的Ca2 +进入和依赖于内皮的平滑肌松弛中的作用。我们提供的证据表明,当人工耗竭Ca2 +存储时,iPLA2参与了内皮存储操作的Ca2 +进入的激活。我们还显示,在用循环激素ATP刺激内皮细胞的生理刺激过程中发生的持续存储操作性Ca2 +进入是由于iPLA2激活,并显着促进了ATP诱导的内皮依赖性舒张的幅度和持续时间。一致地,发现iPLA2代谢物花生四烯酸和溶血磷脂酰胆碱均能刺激Ca2 +进入天然内皮细胞。但是,只有后者通过NO释放触发内皮依赖性舒张,提示iPLA2在Ca2 +储存耗尽时产生的溶血磷脂酰胆碱可能充当细胞内信使,刺激储存操作的Ca2 +进入并随后在内皮细胞中产生NO。最后,我们发现ACh诱导的内皮舒张也取决于iPLA2的激活,这表明iPLA2依赖于内皮存储操作的Ca2 +进入的控制是调节动脉张力的关键生理机制#

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