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首页> 外文期刊>The Journal of general physiology >Acute Oxygen Sensing in Heme Oxygenase-2 Null Mice
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Acute Oxygen Sensing in Heme Oxygenase-2 Null Mice

机译:血红素加氧酶2空小鼠的急性氧气感测

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Hemeoxygenase-2 (HO-2) is an antioxidant enzyme that can modulate recombinant maxi-K+ channels and has been proposed to be the acute O2 sensor in the carotid body (CB). We have tested the physiological contribution of this enzyme to O2 sensing using HO-2 null mice. HO-2 deficiency leads to a CB phenotype characterized by organ growth and alteration in the expression of stress-dependent genes, including the maxi-K+ channel α-subunit. However, sensitivity to hypoxia of CB is remarkably similar in HO-2 null animals and their control littermates. Moreover, the response to hypoxia in mouse and rat CB cells was maintained after blockade of maxi-K+ channels with iberiotoxin. Hypoxia responsiveness of the adrenal medulla (AM) (another acutely responding O2-sensitive organ) was also unaltered by HO-2 deficiency. Our data suggest that redox disregulation resulting from HO-2 deficiency affects maxi-K+ channel gene expression but it does not alter the intrinsic O2 sensitivity of CB or AM cells. Therefore, HO-2 is not a universally used acute O2 sensor.
机译:血红素加氧酶2(HO-2)是一种抗氧化酶,可以调节重组maxi-K +通道,已被提议作为颈动脉体(CB)中的急性O2传感器。我们已经使用HO-2空小鼠测试了该酶对O2感应的生理贡献。 HO-2缺乏会导致CB表型,其特征是器官生长和应力依赖性基因(包括maxi-K +通道α-亚基)的表达发生变化。然而,在HO-2无效的动物及其对照同窝动物中,对CB低氧的敏感性非常相似。此外,在小鼠和大鼠CB细胞中对缺氧的反应在用埃博毒素阻断maxi-K +通道后得以维持。肾上腺髓质(AM)(另一个对O2敏感的急性反应器官)的缺氧反应性也未因HO-2缺乏而改变。我们的数据表明由HO-2缺乏引起的氧化还原失调会影响maxi-K +通道基因的表达,但不会改变CB或AM细胞的固有O2敏感性。因此,HO-2不是普遍使用的急性氧气传感器。

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