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通过蛋白质工程研究血红蛋白氧结合位点的远端残基。

Distal residues in the oxygen binding site of haemoglobin studied by protein engineering.

作者信息

Nagai K, Luisi B, Shih D, Miyazaki G, Imai K, Poyart C, De Young A, Kwiatkowsky L, Noble R W, Lin S H

机构信息

MRC Laboratory of Molecular Biology, Cambridge, UK.

出版信息

Nature. 1987;329(6142):858-60. doi: 10.1038/329858a0.

Abstract

The geometries of the Fe-O2 and Fe-CO bonds in myoglobin and haemoglobin differ significantly from those in free porphyrin model compounds. It has been suggested that steric hindrance by Val-E11 and His-E7 and a hydrogen bond between His-E7 and oxygen affect the geometry and electronic state of the Fe-ligand bond, and that these interactions may be important in controlling oxygen affinity. We have produced mutant haemoglobins in E. coli having Val(67 beta)E11 replaced by Ala, Met, Leu or Ile and His(58 beta)E7 by Gln, Val or Gly. We have studied the effect of these mutations on the equilibrium and kinetics of ligand binding. The conformation of the new side chains and their effect on the protein structure have been examined by X-ray crystallography, and the vibrational properties of the Fe-CO bond observed by resonance Raman spectroscopy. We found that the steric hindrance of ligand binding by the E11 residue and the polarity of the E7 residue in the beta subunit are critical for fine-tuning ligand affinity.

摘要

肌红蛋白和血红蛋白中Fe - O₂及Fe - CO键的几何结构与游离卟啉模型化合物中的显著不同。有人提出,缬氨酸 - E11和组氨酸 - E7的空间位阻以及组氨酸 - E7与氧之间的氢键会影响Fe - 配体键的几何结构和电子态,并且这些相互作用在控制氧亲和力方面可能很重要。我们在大肠杆菌中制备了突变血红蛋白,将缬氨酸(67β)E11分别替换为丙氨酸、甲硫氨酸、亮氨酸或异亮氨酸,将组氨酸(58β)E7分别替换为谷氨酰胺、缬氨酸或甘氨酸。我们研究了这些突变对配体结合平衡和动力学的影响。通过X射线晶体学研究了新侧链的构象及其对蛋白质结构的影响,并通过共振拉曼光谱观察了Fe - CO键的振动特性。我们发现,β亚基中E11残基对配体结合的空间位阻以及E7残基的极性对于微调配体亲和力至关重要。

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