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首页> 外文期刊>American Journal of Physiology >Contrasting effects of cPLA2 on epithelial Na+ transport.
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Contrasting effects of cPLA2 on epithelial Na+ transport.

机译:cPLA2对上皮Na +转运的对比作用。

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Activity of the epithelial Na+ channel (ENaC) is the limiting step for discretionary Na+ reabsorption in the cortical collecting duct. Xenopus laevis kidney A6 cells were used to investigate the effects of cytosolic phospholipase A2 (cPLA2) activity on Na+ transport. Application of aristolochic acid, a cPLA2 inhibitor, to the apical membrane of monolayers produced a decrease in apical [3H]arachidonic acid (AA) release and led to an approximate twofold increase in transepithelial Na+ current. Increased current was abolished by the nonmetabolized AA analog 5,8,11,14-eicosatetraynoic acid (ETYA), suggesting that AA, rather than one of its metabolic products, affected current. In single channel studies, ETYA produced a decrease in ENaC open probability. This suggests that cPLA2 is tonically active in A6 cells and that the end effect of liberated AA at the apical membrane is to reduce Na+ transport via actions on ENaC. In contrast, aristolochic acid applied basolaterally inhibited current, and the effect was not reversed by ETYA. Basolateral application of the cyclooxygenase inhibitor ibuprofen also inhibited current. Both effects were reversed by prostaglandin E2 (PGE2). This suggests that cPLA2 activity and free AA, which is metabolized to PGE2, are necessary to support transport. This study supports the fine-tuning of Na+ transport and reabsorption through the regulation of free AA and AA metabolism.
机译:上皮Na +通道(ENaC)的活性是皮质收集管中任意Na +重吸收的限制步骤。非洲爪蟾肾脏A6细胞用于研究细胞溶质磷脂酶A2(cPLA2)活性对Na +转运的影响。将马兜铃酸(一种cPLA2抑制剂)应用到单分子膜的根尖膜上会导致根尖[3H]花生四烯酸(AA)释放减少,并导致跨上皮Na +电流增加大约两倍。未代谢的AA类似物5,8,11,14-二十碳四丁酸(ETYA)消除了增加的电流,这表明AA,而不是其代谢产物之一,影响了电流。在单通道研究中,ETYA降低了ENaC开放的可能性。这表明cPLA2在A6细胞中具有调性活性,而在根尖膜上释放的AA的最终作用是通过对ENaC的作用来减少Na +转运。相比之下,马兜铃酸在基底外侧施加抑制电流,而ETYA并没有逆转这种作用。环氧合酶抑制剂布洛芬在基底外侧的应用也可抑制电流。前列腺素E2(PGE2)可逆转这两种作用。这表明cPLA2活性和被代谢成PGE2的游离AA对支持转运是必需的。这项研究通过调节游离AA和AA代谢来支持Na +转运和重吸收的微调。

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