Sun Peng, Liu Wen, Lin Dao-Hong, Yue Peng, Kemp Rowena, Satlin Lisa M, Wang Wen-Hui
Department of Pharmacology, New York Medical College, Valhalla, NY 10595, USA.
J Am Soc Nephrol. 2009 Mar;20(3):513-23. doi: 10.1681/ASN.2008040427. Epub 2008 Dec 10.
The cortical collecting duct (CCD), which is involved in renal potassium (K) excretion, expresses cytochrome P450 (CYP)-epoxygenase. Here, we examined the effect of high dietary K on renal expression of CYP2C23 and CYP2J2 in the rat, as well as the role of CYP-epoxygenase-dependent metabolism of arachidonic acid in the regulation of Ca(2+)-activated big-conductance K (BK) channels. By Western blot analysis, high dietary K stimulated the expression of CYP2C23 but not CYP2J2 and increased 11,12-epoxyeicosatrienoic acid (11,12-EET) levels in isolated rat CCD tubules. Application of arachidonic acid increased BK channel activity, and this occurred to a greater extent in rats on a high-K diet compared with a normal-K diet. This effect was unlikely due to arachidonic acid-induced changes in membrane fluidity, because 11,14,17-eicosatrienoic acid did not alter BK channel activity. Inhibiting CYP-epoxygenase but not cyclooxygenase- or CYP-omega-hydroxylase-dependent pathways completely abolished the stimulatory effect of arachidonic acid on BK channel activity. In addition, application of 11,12-EET mimicked the effect of arachidonic acid on BK channel activity, even in the presence of CYP-epoxygenase inhibition. This effect seemed specific to 11,12-EET, because both 8,9- and 14,15-EET failed to stimulate BK channels. Finally, inhibition of CYP-epoxygenase abolished iberiotoxin-sensitive and flow-stimulated but not basal net K secretion in isolated microperfused CCD. In conclusion, high dietary K stimulates the renal CYP-epoxygenase pathway, which plays an important role in activating BK channels and flow-stimulated K secretion in the CCD.
参与肾脏钾(K)排泄的皮质集合管(CCD)表达细胞色素P450(CYP)-环氧合酶。在此,我们研究了高钾饮食对大鼠肾脏CYP2C23和CYP2J2表达的影响,以及CYP-环氧合酶依赖性花生四烯酸代谢在钙(Ca2+)激活的大电导钾(BK)通道调节中的作用。通过蛋白质印迹分析,高钾饮食刺激了CYP2C23的表达,但未刺激CYP2J2的表达,并增加了分离的大鼠CCD小管中11,12-环氧二十碳三烯酸(11,12-EET)的水平。花生四烯酸的应用增加了BK通道活性,与正常钾饮食的大鼠相比,高钾饮食的大鼠这种情况更明显。这种效应不太可能是由于花生四烯酸引起的膜流动性变化,因为11,14,17-二十碳三烯酸不会改变BK通道活性。抑制CYP-环氧合酶而不是环氧化酶或CYP-ω-羟化酶依赖性途径完全消除了花生四烯酸对BK通道活性的刺激作用。此外,即使在存在CYP-环氧合酶抑制的情况下,11,12-EET的应用也模拟了花生四烯酸对BK通道活性的影响。这种效应似乎对11,12-EET具有特异性,因为8,9-EET和14,15-EET均未能刺激BK通道。最后,抑制CYP-环氧合酶消除了分离的微灌注CCD中对iberiotoxin敏感和流量刺激的但不是基础净钾分泌。总之,高钾饮食刺激肾脏CYP-环氧合酶途径,该途径在激活CCD中的BK通道和流量刺激的钾分泌中起重要作用。