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[血红蛋白,XLIII:欧洲鼹鼠血红蛋白的一级结构(作者译)]

[Hemoglobins, XLIII: The primary structure of mole hemoglobin (Talpa europaea) (author's transl)].

作者信息

Kleinschmidt T, Jelkmann W, Braunitzer G

出版信息

Hoppe Seylers Z Physiol Chem. 1981 Sep;362(9):1263-72.

PMID:7346384
Abstract

The hemoglobin of the european mole (Talpa europaea) has only one component. The alpha- and beta-chains were separated by chromatography on CM 52 cellulose. The primary structures of both chains were mainly established on the tryptic peptides by automatic Edman degradation. The N-terminal regions were sequenced on the chains. Large C-terminal peptides could be isolated and sequenced after acidic hydrolysis of the Asp-Pro bond (alpha: 94/95, beta: 99/100). The peptides were aligned by their homology with human alpha- and beta-chains. A comparison with human hemoglobin shows an exchange of 18 amino acid residues in the alpha-chains and of 30 in the beta-chains. The substitutions in the surroundings of the heme and the contacts between the subunits are discussed. All amino acid residues responsible for the binding of 2,3-dihosphoglycerate are present. Nevertheless a high oxygen affinity and a reduced interaction with diphosphoglycerate are found in mole hemoglobin (Jelkmann, W., Oberthür, W., Kleinschmidt, T. & Braunitzer, G. (1981) Respir. Physiol., in press). According to the sequence a relaxed structure of the central cavity between the beta-chains can be the reason for the low interaction between phosphate and protein. The oxygen affinity is not only affected by the presence of diphosphoglycerate-binding sites in hemoglobin but also by the structure in this region of the molecule.

摘要

欧洲鼹鼠(Talpa europaea)的血红蛋白只有一个组分。通过在CM 52纤维素上进行色谱分离,将α链和β链分开。两条链的一级结构主要通过自动Edman降解法在胰蛋白酶肽段上确定。对链的N端区域进行了测序。在Asp-Pro键(α链:94/95,β链:99/100)进行酸性水解后,可以分离并测序大的C端肽段。通过与人类α链和β链的同源性对肽段进行比对。与人类血红蛋白的比较显示,α链中有18个氨基酸残基发生了交换,β链中有30个氨基酸残基发生了交换。讨论了血红素周围的取代情况以及亚基之间的接触。所有负责结合2,3-二磷酸甘油酸的氨基酸残基都存在。然而,在鼹鼠血红蛋白中发现其具有高氧亲和力以及与二磷酸甘油酸的相互作用减弱(Jelkmann, W., Oberthür, W., Kleinschmidt, T. & Braunitzer, G. (1981) Respir. Physiol.,即将发表)。根据序列,β链之间中心腔的松弛结构可能是磷酸盐与蛋白质之间相互作用较弱的原因。氧亲和力不仅受血红蛋白中二磷酸甘油酸结合位点的存在影响,还受分子该区域结构的影响。

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