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同金属人类血红蛋白的异金属杂化物。

Heterometallic hybrids of homometallic human hemoglobins.

作者信息

Huang Y, Yonetani T, Tsuneshige A, Hoffman B M, Ackers G K

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Apr 30;93(9):4425-30. doi: 10.1073/pnas.93.9.4425.

DOI:10.1073/pnas.93.9.4425
PMID:8633083
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC39554/
Abstract

Hybridization experiments between normal Hb tetramers (Fe2+ Hb) and those with four metal-substituted hemes (i.e., replacement of Fe2+ by Co2+, Mg2+, Mn2+, Mn3+, Ni2+, or Zn2+) have revealed unexpected behavior. These homometallic Hbs have previously served as models that mimic the deoxy or oxy properties of normal Fe2+ Hb. In this study, hybrids were composed of one alpha 1 beta 1 dimer that is metal-substituted at both hemes, in association with a second dimer alpha 2 beta 2 that has normal Fe2+ hemes. Both metal-substituted subunits are unligated, whereas the two Fe2+ subunits either are both unligated or both ligated with O2, CO, or CN. It was found that four of the metal-substituted Hbs (Mg2+ Hb, Mn2+ Hb, Ni2+ Hb, and Zn2+ Hb) did not form detectable amounts of heterometallic hybrids with normal Fe2+ Hb even though (i) their homometallic parents formed tight tetrameric complexes with stabilities similar to that of Fe2+ Hb and (ii) hybrids with metal substitution at both alpha sites or both beta sites are known to form readily. This striking positional effect was independent of whether the normal Fe2+ hemes were ligated and of which ligand was used. These findings indicate that surprisingly large changes in tetramer behavior can arise from small and subtle perturbations at the heme sites. Possible origins of these effects are considered.

摘要

正常血红蛋白四聚体(Fe2+血红蛋白)与四个金属取代血红素的血红蛋白(即Fe2+被Co2+、Mg2+、Mn2+、Mn3+、Ni2+或Zn2+取代)之间的杂交实验揭示了意想不到的行为。这些同金属血红蛋白此前一直作为模拟正常Fe2+血红蛋白脱氧或氧合特性的模型。在本研究中,杂交体由一个在两个血红素处都被金属取代的α1β1二聚体与第二个具有正常Fe2+血红素的α2β2二聚体组成。两个被金属取代的亚基都未结合配体,而两个Fe2+亚基要么都未结合配体,要么都与O2、CO或CN结合。结果发现,四种被金属取代的血红蛋白(Mg2+血红蛋白、Mn2+血红蛋白、Ni2+血红蛋白和Zn2+血红蛋白)与正常Fe2+血红蛋白未形成可检测量的异金属杂交体,尽管(i)它们的同金属亲本形成了紧密的四聚体复合物,其稳定性与Fe2+血红蛋白相似,且(ii)已知在两个α位点或两个β位点都有金属取代的杂交体很容易形成。这种显著的位置效应与正常Fe2+血红素是否结合配体以及使用哪种配体无关。这些发现表明,血红素位点的微小和细微扰动可能会导致四聚体行为出现惊人的巨大变化。文中考虑了这些效应的可能来源。

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本文引用的文献

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Oxygen equilibrium properties of asymmetric nickel(II)-iron(II) hybrid hemoglobin.不对称镍(II)-铁(II)杂合血红蛋白的氧平衡特性
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Single-site modifications of half-ligated hemoglobin reveal autonomous dimer cooperativity within a quaternary T tetramer.半连接血红蛋白的单位点修饰揭示了四级T四聚体内的自主二聚体协同性。
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