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Zn-and Cu-thioneins: A functional classification for metallothioneins?

机译:锌和铜硫蛋白:金属硫蛋白的功能分类?

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This report intends to provide the reader with a deeper insight in the chemical, and extensively biological, characteristics of the metallothionein (MT) system. We have devoted nearly 20 years to the study of MTs and this has allowed us to form what we believe is a more complete picture of this peculiar family of metalloproteins. At the beginning of the 1990s, the landscape of this field was quite different from the overall picture we have now. Many researchers have contributed to the readjustment of this part of scientific knowledge. In our case, we implemented a unified method for obtaining MTs, for characterizing their metal-binding features, and for applying a unified research rationale. All this has helped to enlarge the initial picture that was mainly dominated by mammalian MT1/MT2 and yeast Cup1, by introducing approximately 20 new MTs. It has also allowed some characteristics to be clarified and examined in more detail, such as the cooperativity or the coexistence of multiple species in the metal-substitution reactions, the availability of Ag(I) or Cd(II) for use as respective probes for the Cu(I) and Zn(II) binding sites, the participation of chloride or sulfide ligands in the metal coordination spheres, and the feasibility of using in vitro data as representative of in vivo scenarios. Overall, the results yield enough data to consider new criteria for a proposal of classification of MTs based on MT metal-binding features, which complements the previous classifications, and that can shed light on the still controversial physiological functions of this peculiar superfamily of metalloproteins.
机译:本报告旨在为读者提供有关金属硫蛋白(MT)系统化学和广泛生物学特性的更深刻的见解。我们已经投入了将近20年的时间来研究MT,这使我们能够形成我们认为是这种独特的金属蛋白家族的更完整图景。在1990年代初,这个领域的面貌与我们现在的整体情况截然不同。许多研究人员为科学知识的这一部分的调整做出了贡献。在我们的案例中,我们实施了一种统一的方法来获取MT,以表征MT的金属结合特征,并应用统一的研究原理。通过引入大约20种新MT,所有这些都有助于扩大最初以哺乳动物MT1 / MT2和酵母Cup1为主的最初画面。它还使一些特性得以澄清和更详细地研究,例如金属取代反应中多种物质的协同作用或共存性,Ag(I)或Cd(II)分别用作探针的可能性。 Cu(I)和Zn(II)结合位点,金属配位球中氯化物或硫化物配体的参与以及使用体外数据作为体内情况的代表的可行性。总体而言,结果产生了足够的数据,可以考虑基于MT金属结合特征对MT进行分类的提议的新标准,该标准对先前的分类进行了补充,并且可以阐明该特殊的金属蛋白超家族仍有争议的生理功能。

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