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通过扩散增强能量转移对转铁蛋白金属结合位点进行表征。

Characterization of transferrin metal-binding sites by diffusion-enhanced energy transfer.

作者信息

Yeh S M, Meares C F

出版信息

Biochemistry. 1980 Oct 28;19(22):5057-62. doi: 10.1021/bi00563a019.

Abstract

The distance from the protein surface to ferric or manganic ions in the two specific metal-binding sites of human serum transferrin has been estimated by measuring energy transfer from freely diffusing terbium chelaters in aqueous solution to transferrin-bound metal ions. In addition, both monoferric forms of the protein were studied, as well as the diferric complex formed by using oxalate instead of (bi)carbonate as the auxiliary anion in binding of iron(III) to transferrin. Second-order rate constants for energy transfer between electrically neutral terbium(III)--N-(2-hydroxy-ethyl)ethylenediaminetriacetate and the FeA, FeB, and Fe2 forms of transferrin were 0.9 X 10(5) M-1 S-1, 1.4 X 10(5) M-1 S-1, and 2.6 X 10(5) M-1 S-1, respectively (based on iron concentraton). For the Fe2 species, substitution of oxalate for (bi)carbonate has the effect of decreasing the accessibility of both electrically neutral and negatively charged terbium chelates to the protein-bound iron chromophores. Theoretical considerations of the effect of acceptor location in the protein on energy transfer suggest that the iron chromophores are not on the surface of the protein but are less than 1.7 nm below the surface. The use of diterbium transferrin as energy donor to a small cobalt chelate in solution or to diferric transferrin corroborates these results.

摘要

通过测量水溶液中自由扩散的铽螯合剂向与转铁蛋白结合的金属离子的能量转移,估算了人血清转铁蛋白两个特定金属结合位点中蛋白质表面到铁离子或锰离子的距离。此外,还研究了该蛋白质的两种单铁形式,以及在铁(III)与转铁蛋白结合时使用草酸盐而非(双)碳酸盐作为辅助阴离子形成的双铁复合物。电中性的铽(III)-N-(2-羟乙基)乙二胺三乙酸与转铁蛋白的FeA、FeB和Fe2形式之间能量转移的二级速率常数分别为0.9×10⁵M⁻¹s⁻¹、1.4×10⁵M⁻¹s⁻¹和2.6×10⁵M⁻¹s⁻¹(基于铁浓度)。对于Fe2物种,用草酸盐替代(双)碳酸盐会降低电中性和带负电荷的铽螯合物与蛋白质结合的铁发色团的可及性。关于蛋白质中受体位置对能量转移影响的理论考虑表明,铁发色团不在蛋白质表面,而是在表面以下小于1.7nm处。使用二铽转铁蛋白作为溶液中一种小的钴螯合物或双铁转铁蛋白的能量供体证实了这些结果。

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