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Mechanisms of Hemoglobin Adaptation to High Altitude Hypoxia

机译:血红蛋白适应高原缺氧的机制

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Storz, Jay F., and Hideaki Moriyama. Mechanisms of hemoglobin adaptation. High Alt. Med. Biol. 9:148–157, 2008.—Evidence from a number of vertebrate taxa suggests that modifications of hemoglobin (Hb) function may often play a key role in mediating an adaptive response to high altitude hypoxia. The respiratory functions of Hb are a product of the protein's intrinsic O2-binding affinity and its interactions with allosteric effectors such as protons, chloride ions, CO2, and organic phosphates. Here we review several case studies involving high altitude vertebrates where it has been possible to identify specific mechanisms of Hb adaptation to hypoxia. In addition to comparative studies of Hbs from diverse animal species, functional studies of human Hb mutants also suggest that there is ample scope for evolutionary adjustments in Hb–O2 affinity through alterations of the equilibrium constants of O2 binding to deoxy- and oxyHb or through changes in the allosteric equilibrium constants for the transition between the deoxy- and oxyHb quaternary structures. It may be the case that certain evolutionary paths are followed more often than others simply because they are subject to less stringent pleiotropic constraints.
机译:Storz,Jay F.和Hideyama Moriyama。血红蛋白适应的机制。高Alt。中生物学9:148–157,2008年。来自许多脊椎动物分类群的证据表明,血红蛋白(Hb)功能的修饰通常可能在介导对高原低氧的适应性反应中起关键作用。 Hb的呼吸功能是蛋白质固有的O2结合亲和力及其与变构效应子(如质子,氯离子,CO2和有机磷酸酯)相互作用的产物。在这里,我们回顾了一些涉及高海拔脊椎动物的案例研究,在这些案例研究中,有可能确定Hb适应缺氧的具体机制。除了对各种动物的Hb进行比较研究之外,对人类Hb突变体的功能研究还表明,通过改变与脱氧和oxyHb结合的O2平衡常数或通过改变Hb-O2亲和力,对Hb-O2亲和力进行进化调整的空间很大在变构平衡常数中,用于脱氧和oxyHb四元结构之间的过渡。某些情况下,某些进化路径可能会比其他进化路径更频繁地出现,这仅仅是因为它们受到了较宽松的多效性约束。

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