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首页> 外文期刊>American Journal of Physiology >Upregulation of lung soluble guanylate cyclase during chronic hypoxia is prevented by deletion of eNOS.
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Upregulation of lung soluble guanylate cyclase during chronic hypoxia is prevented by deletion of eNOS.

机译:通过删除eNOS可以防止慢性缺氧时肺可溶性鸟苷酸环化酶的上调。

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摘要

Hypoxia upregulates endothelial (e) nitric oxide synthase (NOS), but how eNOS affects soluble guanylate cyclase (sGC) protein expression in hypoxia-induced pulmonary hypertension is unknown. Wild-type (WT), eNOS-deficient [eNOS(-/-)], and inducible NOS (iNOS)-deficient [iNOS(-/-)] mice were used to investigate the effects of lack of NO from different NOS isoforms on sGC activity and protein expression and its relationship to the muscularization of the pulmonary vasculature. After 6 days of hypoxic exposure (10% O2), the ratios of the right ventricle to left ventricle + septum weight (RV/LV+S) and right ventricle weight to body weight, the lung sGC activity, and vascular muscularization were determined, and protein analysis for eNOS, iNOS, and sGC was performed. Results demonstrated that there were significant increases of RV/LV+S in all animals treated with hypoxia. In hypoxic WT and iNOS(-/-) mice, eNOS and sGC alpha1- and beta1-protein increased twofold; cGMP levels and the number of muscularized vessels also increased compared with hypoxic eNOS(-/-) mice. There was a twofold increase of iNOS protein in WT and eNOS(-/-) mice, and the basal iNOS protein concentration was higher in eNOS(-/-) mice than in WT mice. In contrast, the eNOS(-/-) mouse lung showed no eNOS protein expression, lower cGMP concentrations, and no change of sGC protein levels after hypoxic exposure compared with its normoxic controls (P > 0.34). These results suggest that eNOS, but not iNOS, is a major regulator of sGC activity and protein expression in the pulmonary vasculature.
机译:低氧会上调内皮(e)一氧化氮合酶(NOS),但是在低氧引起的肺动脉高压中eNOS如何影响可溶性鸟苷酸环化酶(sGC)蛋白表达尚不清楚。使用野生型(WT),eNOS缺陷型[eNOS(-/-)]和诱导型NOS(iNOS)缺陷型[iNOS(-/-)]小鼠来研究不同NOS亚型缺乏NO的影响sGC活性和蛋白表达及其与肺血管血管肌肉化的关系。缺氧暴露(10%O2)6天后,确定右心室与左心室+隔垫重量(RV / LV + S)和右心室重量与体重的比率,肺sGC活性和血管肌肉化,并对eNOS,iNOS和sGC进行蛋白质分析。结果表明,所有缺氧治疗的动物的RV / LV + S均显着增加。在缺氧的WT和iNOS(-/-)小鼠中,eNOS和sGC的alpha1-和beta1-蛋白增加了两倍;与低氧eNOS(-/-)小鼠相比,cGMP水平和肌肉化血管的数量也增加了。 WT和eNOS(-/-)小鼠的iNOS蛋白增加了两倍,eNOS(-/-)小鼠的基础iNOS蛋白浓度比WT小鼠高。相比之下,与正常氧对照组相比,低氧暴露后eNOS(-/-)小鼠肺部无eNOS蛋白表达,较低的cGMP浓度和sGC蛋白水平没有变化(P> 0.34)。这些结果表明,eNOS,而不是iNOS,是肺血管系统中sGC活性和蛋白质表达的主要调节剂。

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