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14,15-二羟基二十碳三烯酸通过激活钾钙通道使牛冠状动脉舒张。

14,15-Dihydroxyeicosatrienoic acid relaxes bovine coronary arteries by activation of K(Ca) channels.

作者信息

Campbell William B, Deeter Christine, Gauthier Kathryn M, Ingraham Richard H, Falck J R, Li Pin-Lan

机构信息

Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2002 May;282(5):H1656-64. doi: 10.1152/ajpheart.00597.2001.

Abstract

Epoxyeicosatrienoic acids (EETs) cause vascular relaxation by activating smooth muscle large conductance Ca(2+)-activated K(+) (K(Ca)) channels. EETs are metabolized to dihydroxyeicosatrienoic acids (DHETs) by epoxide hydrolase. We examined the contribution of 14,15-DHET to 14,15-EET-induced relaxations and characterized its mechanism of action. 14,15-DHET relaxed U-46619-precontracted bovine coronary artery rings but was approximately fivefold less potent than 14,15-EET. The relaxations were inhibited by charybdotoxin, iberiotoxin, and increasing extracellular K(+) to 20 mM. In isolated smooth muscle cells, 14,15-DHET increased an iberiotoxin-sensitive, outward K(+) current and increased K(Ca) channel activity in cell-attached patches and inside-out patches only when GTP was present. 14,15-[(14)C]EET methyl ester (Me) was converted to 14,15-[(14)C]DHET-Me, 14,15-[(14)C]DHET, and 14,15-[(14)C]EET by coronary arterial rings and endothelial cells but not by smooth muscle cells. The metabolism to 14,15-DHET was inhibited by the epoxide hydrolase inhibitors 4-phenylchalcone oxide (4-PCO) and BIRD-0826. Neither inhibitor altered relaxations to acetylcholine, whereas relaxations to 14,15-EET-Me were increased slightly by BIRD-0826 but not by 4-PCO. 14,15-DHET relaxes coronary arteries through activation of K(Ca) channels. Endothelial cells, but not smooth muscle cells, convert EETs to DHETs, and this conversion results in a loss of vasodilator activity.

摘要

环氧二十碳三烯酸(EETs)通过激活平滑肌大电导钙激活钾(K(Ca))通道引起血管舒张。EETs被环氧水解酶代谢为二羟基二十碳三烯酸(DHETs)。我们研究了14,15-DHET对14,15-EET诱导的舒张作用的贡献,并对其作用机制进行了表征。14,15-DHET使U-46619预收缩的牛冠状动脉环舒张,但效力约为14,15-EET的五分之一。这些舒张作用被蝎毒素、iberiotoxin以及将细胞外钾离子浓度增加到20 mM所抑制。在分离的平滑肌细胞中,仅当存在GTP时,14,15-DHET增加了一种对iberiotoxin敏感的外向钾电流,并增加了细胞贴附片和外翻片膜中的K(Ca)通道活性。14,15-[(14)C]EET甲酯(Me)被冠状动脉环和内皮细胞转化为14,15-[(14)C]DHET-Me、14,15-[(14)C]DHET和14,15-[(14)C]EET,但平滑肌细胞不能转化。环氧水解酶抑制剂4-苯基查耳酮氧化物(4-PCO)和BIRD-0826抑制了向14,15-DHET的代谢。两种抑制剂均未改变对乙酰胆碱的舒张作用,而BIRD-0826使对14,15-EET-Me的舒张作用略有增加,但4-PCO没有此作用。14,15-DHET通过激活K(Ca)通道使冠状动脉舒张。内皮细胞而非平滑肌细胞将EETs转化为DHETs,这种转化导致血管舒张活性丧失。

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