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首页> 外文期刊>The Journal of Experimental Biology >Genetically based low oxygen affinities of felid hemoglobins: lack of biochemical adaptation to high-altitude hypoxia in the snow leopard
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Genetically based low oxygen affinities of felid hemoglobins: lack of biochemical adaptation to high-altitude hypoxia in the snow leopard

机译:基于遗传的猫血红蛋白低氧亲和力:雪豹缺乏对高海拔缺氧的生物化学适应性

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摘要

Genetically based modifications of hemoglobin (Hb) function that increase blood-O-2 affinity are hallmarks of hypoxia adaptation in vertebrates. Among mammals, felid Hbs are unusual in that they have low intrinsic O-2 affinities and reduced sensitivities to the allosteric cofactor 2,3-diphosphoglycerate (DPG). This combination of features compromises the acclimatization capacity of blood-O-2 affinity and has led to the hypothesis that felids have a restricted physiological niche breadth relative to other mammals. In seeming defiance of this conjecture, the snow leopard (Panthera uncia) has an extraordinarily broad elevational distribution and occurs at elevations above 6000 m in the Himalayas. Here, we characterized structural and functional variation of big cat Hbs and investigated molecular mechanisms of Hb adaptation and allosteric regulation that may contribute to the extreme hypoxia tolerance of the snow leopard. Experiments revealed that purified Hbs from snow leopard and African lion exhibited equally low O-2 affinities and DPG sensitivities. Both properties are primarily attributable to a single amino acid substitution, beta 2His -> Phe, which occurred in the common ancestor of Felidae. Given the low O-2 affinity and reduced regulatory capacity of feline Hbs, the extreme hypoxia tolerance of snow leopards must be attributable to compensatory modifications of other steps in the O-2-transport pathway.
机译:基于遗传的血红蛋白(Hb)功能修饰可增加血液O-2亲和力,是脊椎动物缺氧适应的标志。在哺乳动物中,猫Hb具有不寻常的特征,因为它们固有的O-2亲和力低,对变构辅因子2,3-二磷酸甘油酸酯(DPG)的敏感性降低。这些特征的组合损害了血液-O-2亲和力的适应能力,并导致了这样的假说:与其他哺乳动物相比,猫科动物的生理生态位宽度有限。雪豹(Panthera uncia)似乎无视这一猜想,其海拔分布异常宽广,并在喜马拉雅山的6000 m以上海拔处发生。在这里,我们表征了大型猫Hb的结构和功能变异,并研究了Hb适应和变构调节的分子机制,这些机制可能有助于雪豹的极端低氧耐受性。实验表明,来自雪豹和非洲狮的纯化Hb表现出同样低的O-2亲和力和DPG敏感性。这两个特性主要归因于在Felidae的共同祖先中发生的单个氨基酸取代,即β2His-> Phe。鉴于猫Hb的O-2亲和力低且调节能力降低,因此,雪豹的极端低氧耐受性必须归因于O-2转运途径中其他步骤的补偿性修饰。

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