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人血清白蛋白铜(II)和镍(II)转运位点的表征。通过碳-13和氢-1核磁共振光谱研究铜(II)和镍(II)与人血清白蛋白1-24肽段的结合。

Characterization of the copper(II)- and nickel(II)-transport site of human serum albumin. Studies of copper(II) and nickel(II) binding to peptide 1-24 of human serum albumin by 13C and 1H NMR spectroscopy.

作者信息

Laussac J P, Sarkar B

出版信息

Biochemistry. 1984 Jun 5;23(12):2832-8. doi: 10.1021/bi00307a046.

Abstract

As a basis for understanding the role of albumin in the transport of metal ions, detailed investigations have been carried out to elucidate the structure of Ni(II)- and Cu(II)-binding site of the peptide residue corresponding to the NH2-terminal peptide fragment 1-24 of human serum albumin by 1H and 13C NMR spectroscopy. These studies have been conducted in aqueous medium at different pH values and at different ligand/metal ratios. The results show the following: (i) Diamagnetic Ni(II) complex and paramagnetic Cu(II) complex are in slow exchange NMR time scale. (ii) Titration results of Ni(II)-bound form of peptide 1-24 show the presence of a 1:1 complex in the wide pH range (6.0-11.0), and the same stoichiometry is proposed for Cu(II) as well. (iii) Analysis of the spectra suggests that both Ni(II) and Cu(II) have one specific binding site at the NH2-terminal tripeptide segment (Asp-Ala-His...) involving the Asp alpha-NH2, His N(1) imidazole, two deprotonated peptide nitrogens (Ala NH and His NH), and the Asp COO- group. (iv) Complexation of Ni(II) and Cu(II) causes conformational change near the metal-binding site of the polypeptide chain, but there is no other binding group involved besides those in the first three residues.

摘要

作为理解白蛋白在金属离子转运中作用的基础,已通过¹H和¹³C NMR光谱对人血清白蛋白NH₂末端肽片段1 - 24相应肽残基的Ni(II)和Cu(II)结合位点结构进行了详细研究。这些研究在不同pH值和不同配体/金属比的水性介质中进行。结果如下:(i) 抗磁性Ni(II)配合物和顺磁性Cu(II)配合物处于慢交换NMR时间尺度。(ii) 肽1 - 24的Ni(II)结合形式的滴定结果表明在宽pH范围(6.0 - 11.0)存在1:1配合物,对于Cu(II)也提出了相同的化学计量。(iii) 光谱分析表明Ni(II)和Cu(II)在NH₂末端三肽片段(Asp - Ala - His...)均有一个特定结合位点,涉及Asp α - NH₂、His N(1)咪唑、两个去质子化的肽氮(Ala NH和His NH)以及Asp COO⁻基团。(iv) Ni(II)和Cu(II)的络合导致多肽链金属结合位点附近的构象变化,但除前三个残基中的那些基团外没有其他结合基团参与。

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