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首页> 外文期刊>Antioxidants and redox signalling >Hypoxia and heme oxygenases: oxygen sensing and regulation of expression.
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Hypoxia and heme oxygenases: oxygen sensing and regulation of expression.

机译:缺氧和血红素加氧酶:氧感测和表达调节。

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Heme is an essential molecule for life, as it is involved in sensing and using oxygen. Heme must be synthesized and degraded within an individual nucleated cell. Physiologic heme degradation is catalyzed by two functional isozymes of heme oxygenase, heme oxygenase-1 (HO-1) and HO-2, yielding carbon monoxide, iron, and biliverdin, an immediate precursor to bilirubin. HO-1 is an inducible enzyme, but the expression level of HO-2 is maintained in a narrow range. Characteristically, human HO-1 contains no Cys residue, whereas human HO-2 contains three Cys residues, each of which might be involved in heme binding. These features suggest separate physiologic roles of HO-1 and HO-2. Recent studies have shown that the expression levels of HO-1 and HO-2 are reduced under hypoxia, depending on the cell types. Moreover, we have proposed HO-2 as a potential O(2) sensor, because HO-2-deficient mice show hypoxemia and a blunted hypoxic ventilatory response with normal hypercapnic ventilatory response. HO-2-deficientmice also show hypertrophy of the pulmonary venous myocardium and enlargement of the carotid body. These morphometric changes are attributable to chronic hypoxemia. Here, we update the understanding of the regulation of HO-1 and HO-2 expression and summarize the regulatory role of HO-2 in the intercellular communication.
机译:血红素是生命中必不可少的分子,因为它涉及氧的感应和使用。血红素必须在单个有核细胞内合成并降解。血红素加氧酶的两个功能同工酶血红素加氧酶-1(HO-1)和HO-2催化生理性血红素降解,产生一氧化碳,铁和胆绿素,即胆红素的直接前体。 HO-1是一种可诱导的酶,但是HO-2的表达水平维持在窄范围内。特征在于,人HO-1不包含Cys残基,而人HO-2包含三个Cys残基,每个残基都可能参与血红素结合。这些特征表明HO-1和HO-2的单独的生理作用。最近的研究表明,在缺氧条件下,HO-1和HO-2的表达水平会降低,具体取决于细胞类型。此外,我们已提出HO-2作为潜在的O(2)传感器,因为HO-2缺陷小鼠表现出低氧血症和低氧通气反应减弱,而正常的高碳酸血症通气反应。 HO-2缺陷型小鼠还显示出肺静脉心肌肥大和颈动脉体增大。这些形态变化可归因于慢性低氧血症。在这里,我们更新了对HO-1和HO-2表达调控的理解,并总结了HO-2在细胞间通讯中的调控作用。

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