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里士满血红蛋白。亚基解离与氧平衡特性。

Hemoglobin Richmond. Subunit dissociation and oxygen equilibrium properties.

作者信息

Winslow R M, Charache S

出版信息

J Biol Chem. 1975 Sep 10;250(17):6939-42.

PMID:239952
Abstract

In hemoglobin Richmond (beta102 leads to Lys), amino acid substitution has occurred at the same site as the mutation in hemoglobin Kansas (beta102 Asn leads to Thr), a variant with very low oxygen affinity. Although hemoglobin Richmond has been shown to have increased tetramer-dimer dissociation, its oxygen affinity has been inferred to be normal from studies on hemolysates of carriers. We have isolated hemoglobin Richmond and have further studied its properties. We confirm that the oxygen affinity of pure hemoglobin Richmond under conditions similar to those found in vivo is normal. However, the Bohr effect of the variant hemoglobin is markedly abnormal. Its oxygen affinity is low at high pH and high at low pH, relative to hemoglobin A. The tetramer-dimer equilibrium displays a strong pH dependence such that protons promote dissociation. A model is presented in which the structural change in hemoglobin Richmond results in low oxygen affinity, like hemoglobin Kansas. However, the close linkage between tetramer-dimer dissociation and proton concentration seen with hemoglobin Richmond results in normal oxygen affinity at intracellular pH and hemoglobin concentration, and carriers display no hematological abnormalities.

摘要

在里士满血红蛋白(β102位突变为赖氨酸)中,氨基酸取代发生在与堪萨斯血红蛋白(β102位天冬酰胺突变为苏氨酸)突变相同的位点,堪萨斯血红蛋白是一种氧亲和力极低的变体。尽管已证明里士满血红蛋白的四聚体 - 二聚体解离增加,但从对携带者溶血产物的研究推断其氧亲和力正常。我们分离出了里士满血红蛋白并进一步研究了其特性。我们证实,在类似于体内发现的条件下,纯里士满血红蛋白的氧亲和力正常。然而,该变体血红蛋白的玻尔效应明显异常。相对于血红蛋白A,其在高pH时氧亲和力低,在低pH时氧亲和力高。四聚体 - 二聚体平衡表现出强烈的pH依赖性,使得质子促进解离。本文提出了一个模型,其中里士满血红蛋白的结构变化导致氧亲和力降低,类似于堪萨斯血红蛋白。然而,里士满血红蛋白中四聚体 - 二聚体解离与质子浓度之间的紧密联系导致在细胞内pH和血红蛋白浓度下氧亲和力正常,并且携带者没有血液学异常。

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