首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Identification of 13-Hydroxy-1415-epoxyeicosatrienoic Acid as an Acid-stable Endothelium-derived Hyperpolarizing Factor in Rabbit Arteries
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Identification of 13-Hydroxy-1415-epoxyeicosatrienoic Acid as an Acid-stable Endothelium-derived Hyperpolarizing Factor in Rabbit Arteries

机译:鉴定13-羟基-1415-环氧二十碳三烯酸为兔动脉中酸稳定的内皮源性超极化因子

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摘要

Arachidonic acid (AA) is metabolized by endothelial 15-lipoxygenase (15-LO) to several vasodilatory eicosanoids such as 11,12,15-trihydroxyeicosatrienoic acid (11,12,15-THETA) and its proposed unstable precursor 15-hydroxy-11,12-epoxyeicosatrienoic acid (15-H-11,12-EETA). In the present study, the acid-stable 13-hydroxy-trans-14,15-epoxy-eicosatrienoic acid (13-H-14,15-EETA) was identified and its vascular activities characterized. Rabbit aorta, mesenteric arteries, and the combination of 15-LO and cytochrome P450 2J2 converted AA to two distinct HEETA metabolites. The HEETA metabolites were resistant to acidic hydrolysis but were hydrolyzed by recombinant sEH to a more polar metabolite identified by mass spectrometry as 13,14,15-THETA. Mass spectrometric analyses and HPLC comigration identified the HEETAs as threo- and erythro-diastereomers of 13-H-trans-14,15-EETA. Erythro- and threo-diastereomers of 13-H-trans-14,15-EETA relaxed endothelium-denuded rabbit small mesenteric arteries with maximum relaxations of 22.6 ± 6.0% and 8.6 ± 4.3%, respectively. Apamin (10−7 m) inhibited the relaxations to the erythro-isomer (maximum relaxation = 1.2 ± 5.6%) and increasing [K+]o from 4.6 to 30 mm blocked relaxations to both isomers. In cell-attached patches of mesenteric arterial smooth muscle cells (SMCs), erythro-13-H-trans-14,15-EETA (1–3 × 10−6 m) increased mean open time of small conductance K+ channels (13–14 pS) from 0.0007 ± 0.0007 to 0.0053 ± 0.0042. This activation was inhibited by apamin. The erythro, but not the threo, isomer blocked angiotensin II-stimulated aortic SMC migration. These studies demonstrate that 13-H-14,15-EETAs induces vascular relaxation via K+ channel activation to cause SMC hyperpolarization. Thus, 13-H-14,15-EETA represents a new endothelial factor.
机译:花生四烯酸(AA)被内皮15-脂氧合酶(15-LO)代谢为几种血管扩张性类花生酸,例如11,12,15-三羟基二十碳三烯酸(11,12,15-THETA)及其拟议的不稳定前体15-羟基-11 ,12-环氧二十碳三烯酸(15-H-11,12-EETA)。在本研究中,鉴定了酸稳定的13-羟基-反式-14,15-环氧-二十碳三烯酸(13-H-14,15-EETA)并表征了其血管活性。兔主动脉,肠系膜动脉以及15-LO和细胞色素P450 2J2的组合将AA转换为两种不同的HEETA代谢产物。 HEETA代谢产物对酸性水解具有抗性,但被重组sEH水解为极性更强的代谢产物,质谱鉴定为13,14,15-THETA。质谱分析和HPLC鉴定确定HEETA为13-H-trans-14,15-EETA的苏-和非-非对映异构体。 13-H-trans-14,15-EETA的赤型和苏型非对映异构体使内皮剥蚀的兔小肠系膜动脉舒张,最大舒张率分别为22.6±6.0%和8.6±4.3%。 Apamin(10 −7 m)抑制了赤型异构体的松弛(最大松弛= 1.2±5.6%),并使[K + ] o从4.6毫米增加到30毫米阻止了两个异构体的弛豫。在肠系膜动脉平滑肌细胞(SMC)的细胞贴片中,erythro-13-H-trans-14,15-EETA(1–3×10 −6 m)增加了小电导K + 通道(13–14 pS)从0.0007±0.0007到0.0053±0.0042。谷氨酰胺抑制了这种活化。赤型异构体,而不是苏型异构体,阻断了血管紧张素II刺激的主动脉SMC迁移。这些研究表明13-H-14,15-EETAs通过K + 通道激活诱导血管舒张,引起SMC超极化。因此,13-H-14,15-EETA代表一种新的内皮因子。

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