首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Analysis of Metal-Binding Features of the Wild Type and Two Domain-Truncated Mutant Variants of Littorina littorea Metallothionein Reveals Its Cd-Specific Character
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Analysis of Metal-Binding Features of the Wild Type and Two Domain-Truncated Mutant Variants of Littorina littorea Metallothionein Reveals Its Cd-Specific Character

机译:立托氏酵母金属硫蛋白的野生型和两个域截断的突变体的金属结合特征的分析表明其镉的特定特征。

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摘要

After the resolution of the 3D structure of the Cd9-aggregate of the Littorina littorea metallothionein (MT), we report here a detailed analysis of the metal binding capabilities of the wild type MT, LlwtMT, and of two truncated mutants lacking either the N-terminal domain, Lltr2MT, or both the N-terminal domain, plus four extra flanking residues (SSVF), Lltr1MT. The recombinant synthesis and in vitro studies of these three proteins revealed that LlwtMT forms unique M9-LlwtMT complexes with Zn(II) and Cd(II), while yielding a complex mixture of heteronuclear Zn,Cu-LlwtMT species with Cu(I). As expected, the truncated mutants gave rise to unique M6-LltrMT complexes and Zn,Cu-LltrMT mixtures of lower stoichiometry with respect to LlwtMT, with the SSVF fragment having an influence on their metal binding performance. Our results also revealed a major specificity, and therefore a better metal-coordinating performance of the three proteins for Cd(II) than for Zn(II), although the analysis of the Zn(II)/Cd(II) displacement reaction clearly demonstrates a lack of any type of cooperativity in Cd(II) binding. Contrarily, the analysis of their Cu(I) binding abilities revealed that every LlMT domain is prone to build Cu4-aggregates, the whole MT working by modules analogously to, as previously described, certain fungal MTs, like those of C. neoformans and T. mesenterica. It is concluded that the Littorina littorea MT is a Cd-specific protein that (beyond its extended binding capacity through an additional Cd-binding domain) confers to Littorina littorea a particular adaptive advantage in its changeable marine habitat.
机译:在解决了Littorina littorea metallothionein(MT)的Cd9聚集体的3D结构后,我们在此报告了野生型MT,LlwtMT和两个缺少N-的截短突变体的金属结合能力的详细分析。末端结构域Lltr2MT或两个N末端结构域,以及四个额外的侧翼残基(SSVF)Lltr1MT。这三种蛋白的重组合成和体外研究表明,LlwtMT与Zn(II)和Cd(II)形成独特的M9-LlwtMT复合物,同时生成杂核Zn,Cu-LlwtMT物种与Cu(I)的复杂混合物。如所期望的,截短的突变体产生了独特的M6-LltrMT复合物和相对于LlwtMT具有较低化学计量的Zn,Cu-LltrMT混合物,SSVF片段对其金属结合性能有影响。我们的研究结果还显示了主要的特异性,因此,尽管对Zn(II)/ Cd(II)置换反应的分析清楚地表明,这三种蛋白质对Cd(II)的金属配位性能比对Zn(II)更好。在Cd(II)结合中缺乏任何类型的合作性。相反,对它们的Cu(I)结合能力的分析表明,每个LlMT结构域都易于生成Cu4聚集体,整个MT的工作方式与之前描述的某些真菌MT相似,例如新霉菌和T肠系膜结论是,Littorina littorea MT是一种Cd特异性蛋白(除了通过额外的Cd结合结构域的扩展结合能力以外)还赋予Littorina littorea在其多变的海洋栖息地中特别的适应性优势。

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