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重组血红蛋白Glu-α2β26(A3)→Val/Glu-7(A4)→Ala的功能研究与聚合

Functional studies and polymerization of recombinant hemoglobin Glu-alpha2beta26(A3) --> Val/Glu-7(A4) --> Ala.

作者信息

Lesecq S, Baudin V, Kister J, Marden M C, Poyart C, Pagnier J

机构信息

Institut National de la Santé et de la Recherche Médicale, Unité 299, Hôpital de Bicêtre, 94275 Le Kremlin-Bicêtre, France.

出版信息

J Biol Chem. 1996 Jul 19;271(29):17211-4. doi: 10.1074/jbc.271.29.17211.

DOI:10.1074/jbc.271.29.17211
PMID:8663330
Abstract

In hemoglobin (Hb) S the hydrophobic mutated residue Val-beta6(A3) (donor site) closely interacts with the hydrophobic side groups of Phe-beta85(F1) and Leu-beta88(F4) (EF pocket, acceptor site) of a neighboring tetramer, resulting in decreased solubility and polymerization of the deoxy-Hb. The beta6(A3) residue is followed by two charged residues Glu-beta7(A4) and Lys-beta8(A5). This cluster has no attraction for the hydrophobic EF pocket. We have modified the beta7(A4) residue next to the donor site Val-beta6(A3), replacing the charged Glu by a hydrophobic Ala-(rHb betaE6V/E7A). The single mutant Glu-beta7 --> Ala-(rHb betaE7A) was also engineered. Both rHbs exhibit a heat instability and an increased oxygen affinity compared to Hb A and Hb S. There was a concentration dependence of the ligand binding properties (1-300 microM in heme) indicating an increased amount of dimers relative to Hb A. The deoxy form of rHb betaE6V/E7A polymerizes in vitro, with a decreased rate of polymer formation relative to Hb S, while the single mutant betaE7A does not polymerize in the same experimental conditions. The Glu-beta7(A4) --> Ala substitution does not increase the hydrophobic interaction between donor and acceptor site. We speculate that the loss of the normal saline bridge between Glu-beta7(A4) and Lys-beta132(H10) leads to an increased flexibility of the A helix and may account for the difference of the polymerization for this Hb S mutant.

摘要

在血红蛋白(Hb)S中,疏水突变残基Val-β6(A3)(供体位点)与相邻四聚体的Phe-β85(F1)和Leu-β88(F4)(EF口袋,受体位点)的疏水侧链紧密相互作用,导致脱氧Hb的溶解度降低和聚合。β6(A3)残基后接两个带电荷的残基Glu-β7(A4)和Lys-β8(A5)。该簇对疏水的EF口袋没有吸引力。我们对供体位点Val-β6(A3)旁边的β7(A4)残基进行了修饰,将带电荷的Glu替换为疏水的Ala-(rHb βE6V/E7A)。还构建了单突变体Glu-β7→Ala-(rHb βE7A)。与Hb A和Hb S相比,这两种rHb均表现出热不稳定性和增加的氧亲和力。配体结合特性存在浓度依赖性(血红素浓度为1-300μM),表明相对于Hb A,二聚体数量增加。rHb βE6V/E7A的脱氧形式在体外聚合,相对于Hb S,聚合物形成速率降低,而单突变体βE7A在相同实验条件下不聚合。Glu-β7(A4)→Ala取代不会增加供体和受体位点之间的疏水相互作用。我们推测Glu-β7(A4)和Lys-β132(H10)之间正常盐桥的丧失导致A螺旋的柔韧性增加,这可能解释了这种Hb S突变体聚合的差异。

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