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首页> 外文期刊>Chemistry: A European journal >Evidence of native metal-S~(2-)-metallothionein complexes confirmed by the analysis of Cup1 divalent-metal-ion binding properties
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Evidence of native metal-S~(2-)-metallothionein complexes confirmed by the analysis of Cup1 divalent-metal-ion binding properties

机译:天然金属-S〜(2-)-金属硫蛋白配合物的证据通过Cup1二价-金属离子结合特性的分析得到证实

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摘要

It has previously been shown that recombinant synthesis, under metal-supplemented conditions, of diverse metallothioneins (MTs) results in the recovery of a subpopulation of S~(2-)-containing complexes in addition to the S~(2-)-devoid canonical metal-MT species. Further significance of this finding has remained veiled by the possibility of it being a mere consequence of synthesis in a heterologous bacterial system. Herein, we present definitive evidence that S~(2-) ligands are also constituents of native metal-MT complexes. Because, although practically universal, the highest S ~(2-) content is incorporated by copper-thioneins when coordinating divalent metal ions, we adapted the Saccharomyces cerevisiae Cup1 protein, which is the most paradigmatic copper-thionein, as an experimental model. Most significantly, native Cd-Cup1 complexes were purified and fully spectroscopically and spectrometrically characterized from the 301N mutant yeast strain, which allows Cup1 synthesis even in the absence of copper. These results undoubtedly revealed the presence of a Cd-S~(2-)-Cup1 species in native preparations, which were only recovered when carefully avoiding the use of ion-exchange chromatography in the purification protocol. Furthermore, complete analysis of recombinant (Escherichia coli) Zn-Cup1, Cd-Cup1, and Cu-Cup1 and those complexes that result from Zn/Cd and Zn/Cu replacements in vitro and acidification/renaturalization processes yielded a comprehensive and comparative overview of the metal-binding abilities of Cup1. Overall, we consider the main conclusions of this study to go beyond the mere study of the particular Cup1 MT, so that they should be considered to delineate a new point of view on the interaction between copper-thioneins and divalent metal ions, still an unexplored aspect in MT research. Definitive evidence that sulfide ligands are also constituents of native metal-metallothionein (MT) complexes (see picture) is provided. Therefore, this investigation goes beyond the study of a particular MT and complements previous results about the presence of sulfide moieties in recombinant MT samples. A new point of view on the interaction between copper thioneins and divalent metal ions is delineated.
机译:先前已经表明,在金属补充的条件下,重组合成的各种金属硫蛋白(MTs)导致除了缺乏S〜(2-)的化合物外,还回收了含有S〜(2-)的复合物的亚群。典型的金属MT物种。这一发现的进一步意义仍然被掩盖,因为它可能仅仅是异源细菌系统中合成的结果。在这里,我们提供S〜(2-)配体也是天然金属-MT配合物的确切证据。因为,尽管实际上通用,但当配位二价金属离子时,铜-硫单宁结合了最高的S〜(2-)含量,因此我们采用了酿酒酵母Cup1蛋白(这是最典型的铜-硫代丝氨酸)作为实验模型。最重要的是,从301N突变酵母菌株中纯化了天然Cd-Cup1复合物,并对其进行了全面的光谱和光谱学表征,即使没有铜,也可以合成Cup1。这些结果无疑表明在天然制剂中存在Cd-S〜(2-)-Cup1物种,只有在小心地避免在纯化方案中使用离子交换色谱法时才能回收这些物种。此外,对重组(大肠杆菌)Zn-Cup1,Cd-Cup1和Cu-Cup1以及由Zn / Cd和Zn / Cu替代物在体外以及酸化/再自然化过程产生的复合物的完整分析可对Cup1的金属结合能力。总的来说,我们认为这项研究的主要结论超出了对特定Cup1 MT的研究范围,因此应该考虑它们来勾勒出关于铜-硫蛋白与二价金属离子之间相互作用的新观点,至今仍未探索MT研究的一个方面。提供了明确的证据,证明硫化物配体也是天然金属-金属硫蛋白(MT)配合物的组成部分(参见图片)。因此,这项研究超出了对特定MT的研究范围,并补充了有关重组MT样品中存在硫化物部分的先前结果。描绘了关于硫代铜铜和二价金属离子之间相互作用的新观点。

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