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在金属硫蛋白的α和β结构域中,将末端半胱氨酸替换为组氨酸可维持其结合能力。

Replacement of terminal cysteine with histidine in the metallothionein alpha and beta domains maintains its binding capacity.

作者信息

Romero-Isart N, Cols N, Termansen M K, Gelpí J L, González-Duarte R, Atrian S, Capdevila M, González-Duarte P

机构信息

Department de Química, Faculat de Ciénces, Universitat Autónoma de Barcelona, Spain.

出版信息

Eur J Biochem. 1999 Jan;259(1-2):519-27. doi: 10.1046/j.1432-1327.1999.00074.x.

Abstract

To generate novel forms of metal-binding proteins, six mutant mouse metallothionein (MT) 1 fragments, in which a terminal cysteine residue was replaced by histidine, were expressed in Escherichia coli. The spectroscopic and analytical results showed that the alphaMT (C33H, C36H, C41H, C57H) and betaMT (C5H, C13H) mutant forms bound 4 and 3 Zn(II) atoms per molecule of protein to the nearest integer, even though in C41H and C5H, species of lower stoichiometry were also detected. In Cd(II) titrations, all the Zn(II) ions bound to the mutant proteins were displaced from the binding sites, giving rise to Cd-mutated MT forms with 4 and 3 Cd(II), respectively. However, although Cys-to-His substitutions maintained the binding capacity of the MT fragments, they caused structural changes with respect to the wild-type proteins. While C13H, C36H and C57H seem to contain Zn(II)-aggregates that are closely related to those of the wild-type proteins, only C41H and C57H gave rise to Cd(II)-aggregates similar to those of Cd4-alphaMT, where the His residue plays the role of the substituted Cys. Despite the structural implications of the Cys-to-His replacement, the dissociation constants showed no major decrease in the Cd-binding affinity in any of the mutants assayed compared with the wild-type.

摘要

为了生成新型金属结合蛋白,在大肠杆菌中表达了六个突变型小鼠金属硫蛋白(MT)1片段,其中末端半胱氨酸残基被组氨酸取代。光谱和分析结果表明,αMT(C33H、C36H、C41H、C57H)和βMT(C5H、C13H)突变形式的蛋白质每分子结合4个和3个锌(II)原子至最接近的整数,尽管在C41H和C5H中也检测到了化学计量较低的物种。在镉(II)滴定中,所有与突变蛋白结合的锌(II)离子都从结合位点被取代,分别产生了含有4个和3个镉(II)的镉突变型MT形式。然而,尽管半胱氨酸到组氨酸的取代保持了MT片段的结合能力,但它们相对于野生型蛋白引起了结构变化。虽然C13H、C36H和C57H似乎含有与野生型蛋白密切相关的锌(II)聚集体,但只有C41H和C57H产生了与Cd4-αMT类似的镉(II)聚集体,其中组氨酸残基起到了被取代半胱氨酸的作用。尽管半胱氨酸到组氨酸的取代对结构有影响,但与野生型相比,在任何测定的突变体中,解离常数显示镉结合亲和力没有大幅下降。

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