Department of Pharmacology, New York Medical College, 15 Dana Rd, Valhalla, NY 10595, USA.
Hypertension. 2012 Feb;59(2):339-47. doi: 10.1161/HYPERTENSIONAHA.111.178475. Epub 2011 Dec 19.
The aim of this study is to test whether the Cyp2c44 epoxygenase-dependent metabolism of arachidonic acid prevents the hypertensive effect of a high K (HK) intake by inhibiting the epithelial sodium channel (ENaC) activity. A HK intake elevated Cyp2c44 mRNA expression and 11,12-epoxyeicosatrienoic acid levels in the cortical collecting duct in Cyp2c44(+/+) mice (wild-type [wt]). However, an HK intake failed to increase 11,12-epoxyeicosatrienoic acid formation in the cortical collecting ducts of Cyp2c44(-/-) mice. Moreover, increasing K intake enhanced arachidonic acid-induced inhibition of ENaC in the wt but not in Cyp2c44(-/-) mice. In contrast, 11,12-epoxyeicosatrienoic acid, a Cyp2c44 metabolite, inhibited ENaC in the wt and Cyp2c44(-/-) mice. The notion that Cyp2c44 is the epoxygenase responsible for mediating the inhibitory effects of arachidonic acid on ENaC is further suggested by the observation that inhibiting Cyp-epoxygenase increased the whole-cell Na currents in principal cells of wt but not in Cyp2c44(-/-) mice. Feeding mice with an HK diet raised the systemic blood pressures of Cyp2c44(-/-) mice but was without an effect on wt mice. Moreover, application of amiloride abolished the HK-induced hypertension in Cyp2c44(-/-) mice. The HK-induced hypertension of Cyp2c44(-/-) mice was accompanied by decreasing 24-hour urinary Na excretion and increasing the plasma Na concentration, and the effects were absent in wt mice. In contrast, disruption of the Cyp2c44 gene did not alter K excretion. We conclude that Cyp2c44 epoxygenase mediates the inhibitory effect of arachidonic acid on ENaC and that Cyp2c44 functions as an HK-inducible antihypertensive enzyme responsible for inhibiting ENaC activity and Na absorption in the aldosterone-sensitive distal nephron.
本研究旨在测试 Cyp2c44 依赖的环氧合酶代谢花生四烯酸是否通过抑制上皮钠通道 (ENaC) 活性来预防高 K (HK) 摄入引起的高血压效应。HK 摄入增加了 Cyp2c44(+/+)小鼠(野生型 [wt])皮质集合管中的 Cyp2c44 mRNA 表达和 11,12-环氧二十碳三烯酸水平。然而,HK 摄入未能增加 Cyp2c44(-/-)小鼠皮质集合管中 11,12-环氧二十碳三烯酸的形成。此外,增加 K 摄入增强了 wt 但不是 Cyp2c44(-/-)小鼠中花生四烯酸诱导的 ENaC 抑制。相比之下,Cyp2c44 代谢产物 11,12-环氧二十碳三烯酸抑制了 wt 和 Cyp2c44(-/-)小鼠中的 ENaC。抑制 Cyp-环氧合酶增加 wt 而不是 Cyp2c44(-/-)小鼠主细胞中的全细胞 Na 电流的观察结果进一步表明,Cyp2c44 是介导花生四烯酸对 ENaC 抑制作用的环氧合酶。用 HK 饮食喂养 Cyp2c44(-/-) 小鼠会升高 Cyp2c44(-/-) 小鼠的系统血压,但对 wt 小鼠没有影响。此外,应用阿米洛利消除了 Cyp2c44(-/-) 小鼠中 HK 诱导的高血压。Cyp2c44(-/-) 小鼠的 HK 诱导性高血压伴随着 24 小时尿钠排泄减少和血浆 Na 浓度增加,而 wt 小鼠则没有这些影响。相比之下,破坏 Cyp2c44 基因并未改变 K 排泄。我们得出结论,Cyp2c44 环氧合酶介导了花生四烯酸对 ENaC 的抑制作用,并且 Cyp2c44 作为一种 HK 诱导的降压酶起作用,负责抑制醛固酮敏感的远端肾单位中的 ENaC 活性和 Na 吸收。