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Androgen-sensitive hypertension associated with soluble guanylate cyclase-α1 deficiency is mediated by 20-HETE

机译:与可溶性鸟苷酸环化酶-α1缺乏症相关的雄激素敏感性高血压是由20-HETE介导的

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摘要

Dysregulated nitric oxide (NO) signaling contributes to the pathogenesis of hypertension, a prevalent and often sex-specific risk factor for cardiovascular disease. We previously reported that mice deficient in the α1-subunit of the NO receptor soluble guanylate cyclase (sGCα1−/− mice) display sex- and strain-specific hypertension: male but not female sGCα1−/− mice are hypertensive on an 129S6 (S6) but not a C57BL6/J (B6) background. We aimed to uncover the genetic and molecular basis of the observed sex- and strain-specific blood pressure phenotype. Via linkage analysis, we identified a suggestive quantitative trait locus associated with elevated blood pressure in male sGCα1−/−S6 mice. This locus encompasses Cyp4a12a, encoding the predominant murine synthase of the vasoconstrictor 20-hydroxy-5,8,11,14-eicosatetraenoic acid (20-HETE). Renal expression of Cyp4a12a in mice was associated with genetic background, sex, and testosterone levels. In addition, 20-HETE levels were higher in renal preglomerular microvessels of male sGCα1−/−S6 than of male sGCα1−/−B6 mice. Furthermore, treating male sGCα1−/−S6 mice with the 20-HETE antagonist 20-hydroxyeicosa-6(Z),15(Z)-dienoic acid (20-HEDE) lowered blood pressure. Finally, 20-HEDE rescued the genetic background- and testosterone-dependent impairment of acetylcholine-induced relaxation in renal interlobar arteries associated with sGCα1 deficiency. Elevated Cyp4a12a expression and 20-HETE levels render mice susceptible to hypertension and vascular dysfunction in a setting of sGCα1 deficiency. Our data identify Cyp4a12a as a candidate sex-specific blood pressure-modifying gene in the context of deficient NO-sGC signaling.
机译:一氧化氮(NO)信号失调导致高血压的发病机理,高血压是心血管疾病的普遍且通常是特定性别的危险因素。我们以前曾报道过,缺乏NO受体可溶性鸟苷酸环化酶的α1亚基的小鼠(sGCα1-/-小鼠)表现出性别和品系特异性高血压:雄性而不是雌性sGCα1- /-小鼠在129S6(S6)上有高血压,但在C57BL6 / J(B6)上却没有。我们旨在揭示所观察到的性别和菌株特异性血压表型的遗传和分子基础。通过连锁分析,我们发现了与雄性sGCα1-// S6小鼠血压升高相关的暗示性状性状基因座。该基因座包含Cyp4a12a,编码血管收缩剂20-羟基-5,8,11,14-二十碳四烯酸(20-HETE)的主要鼠合酶。 Cyp4a12a在小鼠中的肾脏表达与遗传背景,性别和睾丸激素水平有关。此外,雄性sGCα1-/- S6的肾小球前微血管中20-HETE水平高于雄性sGCα1-/- B6小鼠。此外,用20-HETE拮抗剂20-hydroxyeicosa-6(Z),15(Z)-二烯二酸(20-HEDE)治疗雄性sGCα1-/- S6小鼠可降低血压。最后,20-HEDE挽救了乙酰胆碱诱导的与sGCα1缺乏相关的肾小叶动脉舒张的遗传背景和睾丸激素依赖性损伤。 Cyp4a12a表达的升高和20-HETE的水平使小鼠在sGCα1缺乏的情况下易患高血压和血管功能障碍。我们的数据将Cyp4a12a鉴定为在NO-sGC信号不足的背景下候选的性别特异性血压调节基因。

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