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Hydrogen sulfide as an oxygen sensor.

机译:硫化氢作为氧气传感器。

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The ability to monitor oxygen (O2) availability and delivery is crucial to an animal's survival. Vertebrates have a number of O2 'sensing' cells that monitor environmental oxygen and ensure adequate delivery to the tissues. While there is little doubt that these cells perform important homeostatic functions, there is little consensus on how a change in O2 concentration, or partial pressure (pO2), is transduced into a physiological response. We recently proposed that the metabolism of hydrogen sulfide (H2S) functions as the O2 sensor in a variety of tissues. In this mechanism, the concentration of biologically active H2S is regulated by the simple balance between constitutive H2S production and its oxidation by mitochondria. This hypothesis is supported by a number of experimental observations in a wide range of O2 sensing tissues: 1) exogenous H2S produces the same physiological response as hypoxia; 2) cellular H2S production is inversely related to pO2 at physiologically relevant pO2s; 3) agonists and antagonists of H2S biosynthesis augment and inhibit hypoxic responses, respectively; and 4) H2S and hypoxia appear to act via common effector pathways. The reciprocal relationship between H2S and O2 also has a long evolutionary history suggesting these gases have been inexorably intertwined throughout evolution. The intent of this review is to elaborate on the mechanism of H2S-mediated O2 sensing.
机译:监视氧气(O2)的可用性和传递的能力对于动物的生存至关重要。脊椎动物具有大量的O2“感应”细胞,它们可以监测环境中的氧气并确保向组织的充分输送。尽管毫无疑问,这些细胞具有重要的体内平衡功能,但关于O2浓度或分压(pO2)的变化如何转换为生理反应的共识却很少。我们最近提出,硫化氢(H2S)的代谢在多种组织中起着O2传感器的作用。在这种机制中,生物活性H2S的浓度由组成型H2S产生与其线粒体氧化之间的简单平衡来调节。在大量的O2敏感组织中,许多实验观察都支持这一假设:1)外源H2S产生与缺氧相同的生理反应; 2)在生理相关的pO2处,细胞H2S的产生与pO2成反比; 3)H 2 S生物合成的激动剂和拮抗剂分别增强和抑制低氧反应; 4)H2S和缺氧似乎是通过常见的效应子途径起作用的。 H2S和O2之间的相互关系也具有悠久的演化历史,表明这些气体在整个演化过程中都不可避免地交织在一起。这篇综述的目的是阐述H2S介导的O2感应的机制。

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