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缺乏内皮型一氧化氮合酶的小鼠血压升高。

Elevated blood pressures in mice lacking endothelial nitric oxide synthase.

作者信息

Shesely E G, Maeda N, Kim H S, Desai K M, Krege J H, Laubach V E, Sherman P A, Sessa W C, Smithies O

机构信息

Department of Pathology and Laboratory Medicine, University of North Carolina at Chapel Hill 27599, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13176-81. doi: 10.1073/pnas.93.23.13176.

Abstract

Nitric oxide produced in endothelial cells affects vascular tone. To investigate the role of endothelial nitric oxide synthase (eNOS) in blood pressure regulation, we have generated mice heterozygous (+/-) or homozygous (-/-) for disruption of the eNOS gene. Immunohistochemical staining with anti-eNOS antibodies showed reduced amounts of eNOS protein in +/- mice and absence of eNOS protein in -/- mutant mice. Male or female mice of all three eNOS genotypes were indistinguishable in general appearance and histology, except that -/- mice had lower body weights than +/+ or +/- mice. Blood pressures tended to be increased (by approximately 4 mmHg) in +/- mice compared with +/+, while -/- mice had a significant increase in pressure compared with +/+ mice (approximately 18 mmHg) or +/- mice (approximately 14 mmHg). Plasma renin concentration in the -/- mice was nearly twice that of +/+ mice, although kidney renin mRNA was modestly decreased in the -/- mice. Heart rates in the -/- mice were significantly lower than in +/- or +/+ mice. Appropriate genetic controls show that these phenotypes in F2 mice are due to the eNOS mutation and are not due to sequences that might differ between the two parental strains (129 and C57BL/6J) and are linked either to the eNOS locus or to an unlinked chromosomal region containing the renin locus. Thus eNOS is essential for maintenance of normal blood pressures and heart rates. Comparisons between the current eNOS mutant mice and previously generated inducible nitric oxide synthase mutants showed that homozygous mutants for the latter differ in having unaltered blood pressures and heart rates; both are susceptible to lipopolysaccharide-induced death.

摘要

内皮细胞产生的一氧化氮会影响血管张力。为了研究内皮型一氧化氮合酶(eNOS)在血压调节中的作用,我们构建了eNOS基因敲除的杂合子(+/-)或纯合子(-/-)小鼠。用抗eNOS抗体进行免疫组织化学染色显示,+/-小鼠中eNOS蛋白量减少,而-/-突变小鼠中不存在eNOS蛋白。除了-/-小鼠体重低于+/+或+/-小鼠外,三种eNOS基因型的雄性或雌性小鼠在外观和组织学上没有区别。与+/+小鼠相比,+/-小鼠的血压有升高趋势(约4 mmHg),而-/-小鼠与+/+小鼠相比血压显著升高(约18 mmHg),与+/-小鼠相比升高约14 mmHg。-/-小鼠的血浆肾素浓度几乎是+/+小鼠的两倍,尽管-/-小鼠的肾脏肾素mRNA略有下降。-/-小鼠的心率明显低于+/-或+/+小鼠。合适的基因对照表明,F2小鼠中的这些表型是由于eNOS突变引起的,而不是由于两个亲本品系(129和C57BL/6J)之间可能不同且与eNOS基因座或包含肾素基因座的非连锁染色体区域连锁的序列。因此,eNOS对于维持正常血压和心率至关重要。将当前的eNOS突变小鼠与先前构建的诱导型一氧化氮合酶突变小鼠进行比较发现,后者的纯合突变体在血压和心率未改变方面存在差异;两者都易受脂多糖诱导的死亡影响。

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