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重组镰状细胞血红蛋白溶解度的空间位阻和疏水决定因素。

Steric and hydrophobic determinants of the solubilities of recombinant sickle cell hemoglobins.

作者信息

Bihoreau M T, Baudin V, Marden M, Lacaze N, Bohn B, Kister J, Schaad O, Dumoulin A, Edelstein S J, Poyart C

机构信息

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

出版信息

Protein Sci. 1992 Jan;1(1):145-50. doi: 10.1002/pro.5560010114.

Abstract

Models for the structure of the fibers of deoxy sickle cell hemoglobin (Hb Hb S, beta 6 Glu-->Val) have been obtained from X-ray and electron microscopic studies. Recent molecular dynamics calculations of polymer formation give new insights on the various specific interactions between monomers. Site-directed mutagenesis with expression of the Hb S beta subunits in Escherichia coli provides the experimental tools to test these models. For Hb S, the beta 6 Val residue is intimately involved in a specific lateral contact, at the donor site, that interacts with the acceptor site of an adjacent molecule composed predominantly of the hydrophobic residues Phe 85 and Leu 88. Comparing natural and artificial mutants indicates that the solubility of deoxyHb decreases in relation to the surface hydrophobicity of the residue at the beta 6 position with Ile > Val > Ala. We also tested the role of the stereospecific adjustment between the donor and acceptor sites by substituting Trp for Glu at the beta 6 location. Among these hydrophobic substitutions and under our experimental conditions, only Val and Ile were observed to induce polymer formation. The interactions for the Ala mutant are too weak whereas a Trp residue inhibits aggregation through steric hindrance at the acceptor site of the lateral contact. Increasing the hydrophobicity at the axial contact between tetramers of the same strand also contributes to the stability of the double strand. This is demonstrated by associating the beta 23 Val-->Ile mutation at the axial contact with either the beta 6 Glu-->Val or beta 6 Glu-->Ile substitution in the same beta subunit.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过X射线和电子显微镜研究,已获得了脱氧镰状细胞血红蛋白(Hb S,β6谷氨酸→缬氨酸)纤维结构的模型。最近关于聚合物形成的分子动力学计算为单体之间的各种特定相互作用提供了新的见解。在大肠杆菌中表达Hb Sβ亚基的定点诱变提供了测试这些模型的实验工具。对于Hb S,β6缬氨酸残基在供体位点紧密参与一种特定的侧向接触,该接触与主要由疏水残基苯丙氨酸85和亮氨酸88组成的相邻分子的受体位点相互作用。比较天然突变体和人工突变体表明,脱氧血红蛋白的溶解度随着β6位置残基的表面疏水性而降低,异亮氨酸>缬氨酸>丙氨酸。我们还通过在β6位置用色氨酸取代谷氨酸来测试供体和受体位点之间立体特异性调节的作用。在这些疏水取代中,在我们的实验条件下,仅观察到缬氨酸和异亮氨酸诱导聚合物形成。丙氨酸突变体的相互作用太弱,而色氨酸残基通过侧向接触受体位点的空间位阻抑制聚集。增加同一条链四聚体之间轴向接触处的疏水性也有助于双链的稳定性。这通过将轴向接触处的β23缬氨酸→异亮氨酸突变与同一β亚基中的β6谷氨酸→缬氨酸或β6谷氨酸→异亮氨酸取代相结合得到证明。(摘要截短于250字)

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