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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The Cu(I)_7 cluster in yeast copper thionein survives major shortening of the polypeptide backbone as deduced from electronic absorption, circular dichroism, luminescence and ~1H NMR
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The Cu(I)_7 cluster in yeast copper thionein survives major shortening of the polypeptide backbone as deduced from electronic absorption, circular dichroism, luminescence and ~1H NMR

机译:由电子吸收,圆二色性,发光和〜1H NMR推导,酵母铜硫蛋白中的Cu(I)_7簇在多肽主链上主要保留下来

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Owing to the frustrating experience of not being able to obtain crystalline yeast Cu(I)_7 - metallothionein, thereby allowing elucidation of the X-ray structure, truncated forms were prepared to facilitate possible crystallization. The mobile remnants at either the N - or C - terminal end of the polypeptide chain were omitted. In parallel with the degree to which the shortening of the protein portion might affect the intactness of the Cu(I)_7 - thiolate cluster, thereby hampering their use as structural models for the intact protein. ~1H two-dimensional NMR spectroscopy at 800 MHz was performed on the intact wild-type yeast Cu_7-thiolate and on two truncated forms (peptide_(-1-40) and peptide_(5-40)). The NMR spectral data reveal, regardless of the length of the polypeptide chain, that the spin patterns were fully preserved with all relevant NOEs. The corresponding calculated structures were virtually identical. All other spectrometric properties, including circular dichroism, luminescence and electronic absorption, allowed the same conclusion. Minor differences. Interestingly, however, the resistance towards oxygen was progressively diminished with decreasing length of the polypeptide backbone. The half-life of the luminescence of the wild-type protein was 48 h while the luminescence of the shortest peptide levelled off within 24 h.
机译:由于无法获得结晶酵母Cu(I)_7-金属硫蛋白的令人沮丧的经验,从而无法阐明X射线结构,因此制备了截短形式以促进可能的结晶。省略了在多肽链的N-或C-末端的移动残基。与蛋白质部分缩短可能影响Cu(I)_7-硫醇盐簇的完整性的程度平行,从而妨碍了它们用作完整蛋白的结构模型。对完整的野生型酵母Cu_7-硫醇盐和两种截短形式(peptide _(-1-40)和peptide_(5-40))进行了800 MHz的〜1H二维NMR光谱分析。 NMR光谱数据表明,不管多肽链的长度如何,所有相关NOE都完全保留了自旋模式。相应的计算结构实际上是相同的。所有其他光谱特性,包括圆二色性,发光性和电子吸收性,都可以得出相同的结论。小差异。然而,有趣的是,随着多肽主链长度的减少,对氧气的抗性逐渐降低。野生型蛋白的发光半衰期为48小时,而最短肽的发光在24小时内趋于平稳。

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