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Mitochondrial complex II is essential for hypoxia-induced pulmonary vasoconstriction of intra-but not of pre-acinar arteries

机译:线粒体复合物II对于缺氧诱导的动脉内动脉但不是髋臼前动脉的肺血管收缩至关重要

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Aims Alveolar hypoxia acutely elicits contraction of pulmonary arteries, leading to a rise in pulmonary arterial pressure (PAP) and shifting blood to better ventilated areas of the lung. The molecular mechanisms underlying this hypoxic pulmonary vasoconstriction (HPV) are still incompletely understood. Here, we investigated the role of succinate dehydrogenase (SDH; synonymous to mitochondrial complex II) in HPV, with particular emphasis on regional differences along the vascular bed and consequences for PAP and perfusion-to-ventilation matching, using mutant mice heterozygous for the SDHD subunit of complex II (SDHD +-).Methods and resultsWestern blots revealed reduced protein content of complex II subunits SDHA, SDHB, and SDHC in lungs of SDHD +- mice, despite unaffected mRNA content as determined by real-time PCR. Hypoxic pulmonary vasoconstriction of small (2050 μ m) intra-acinar and larger (51100 m) pre-acinar arteries was evaluated by videomorphometric analysis of precision-cut lung slices. The hypoxic response was detectable in pre-acinar arteries but absent from intra-acinar arteries of SDHD +- mice. In isolated perfused lungs, basal PAP and its hypoxia-induced increase were indistinguishable between both mouse strains. Arterial oxygenation was measured after provocation of regional ventilatory failure by tracheal fluid instillation in anaesthetized mice, and it declined more in SDHD +- than in wild-type mice. Conclusion SDHD is required for the formation of a stable mitochondrial complex II and it is selectively important for HPV of intra-acinar vessels. This specialized vascular segment participates in perfusion-to-ventilation matching but does not significantly contribute to the acute hypoxic rise in PAP that results from more proximal vasoconstriction.
机译:目的肺泡缺氧会急性引起肺动脉收缩,从而导致肺动脉压(PAP)升高并将血液转移到肺部更好的通风区域。这种低氧性肺血管收缩(HPV)的分子机制仍不完全清楚。在这里,我们研究了杂合SDHD杂合小鼠,研究了琥珀酸脱氢酶(SDH;线粒体复合体II的代名词)在HPV中的作用,特别强调了沿血管床的区域差异以及PAP和灌注-换气匹配的后果。方法和结果Western印迹显示SDHD +-小鼠肺中复合II亚基SDHA,SDHB和SDHC的蛋白质含量降低,尽管实时PCR测定的mRNA含量未受影响。通过精确切割的肺切片的视频形态分析评估小(2050μm)髋臼内和大(51100 m)髋臼前动脉的缺氧性肺血管收缩。在髋臼前动脉中可检测到低氧反应,但SDHD +-小鼠的髋臼内动脉中无缺氧反应。在分离的灌注肺中,两种小鼠品系之间的基础PAP及其由缺氧引起的增加是无法区分的。在麻醉小鼠中通过气管液滴注引起局部通气衰竭后,测量了动脉氧合,SDHD +-中的氧合下降幅度大于野生型小鼠。结论SDHD是形成稳定的线粒体复合物II所必需的,它对髋臼内血管的HPV具有选择性。这个专门的血管节段参与了灌注-换气的匹配,​​但是对近端血管收缩导致的PAP急性低氧升高没有明显贡献。

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