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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Zinc binding sites in Pra1, a zincophore from Candida albicans
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Zinc binding sites in Pra1, a zincophore from Candida albicans

机译:PRA1中的锌结合位点,来自念珠菌念珠菌的锌

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摘要

The aim of this work is to understand the interactions of Zn(II) with Pra1, a zincophore from Candida albicans, one of the most common causes of serious fungal infections in humans. Pra1 is a 299 amino acid protein, secreted from the fungus to specifically bind Zn(II) and deliver it to a transmembrane zinc transporter, Zrt1. We take the first step towards understanding the bioinorganic chemistry of this process, by pointing out the Zn(II) binding sites in Pra1 and understanding the thermodynamics of such interactions. Our approach involves working on model systems (unstructured parts of proteins) in order to identify those regions in Pra1, to which zinc binds with the highest affinity. Mass spectrometry shows the stoichiometry of Zn(II)-peptide complex formation and potentiometric studies give us the partial and overall stability constants for all the formed zinc complexes. NMR clarifies binding sites in the case of doubts. A detailed comparison of these results shows that the C-terminal region of Pra1 binds Zn(II) with the highest affinity, indicating that this region of the zincophore is responsible for the binding of zinc. Such knowledge is an input to the basic bioinorganic chemistry of zinc; it allows us to understand the inorganic biochemistry of zincophores, and it might be a stepping stone towards finding new, fungus specific treatments based on parts of zincophores coupled with antifungal drugs.
机译:这项工作的目的是了解Zn(II)与PRA1,来自Candida albicans的锌的相互作用,是人类严重真菌感染的最常见原因之一。 PRA1是299氨基酸蛋白,从真菌分泌到特异性结合Zn(II)并将其递送至跨膜锌转运蛋白ZrT1。通过指出PRA1中的Zn(II)结合位点并理解这种相互作用的热力学,我们迈向理解该方法的生物碱性化学的第一步。我们的方法涉及在模型系统(蛋白质的非结构化部分)上工作,以便识别PRA1中的那些区域,锌与最高亲和力结合。质谱显示Zn(ii) - 肽复合物形成和电位研究的化学计量,给出了所有形成的锌络合物的部分和整体稳定性常数。 NMR在怀疑的情况下阐明了结合位点。这些结果的详细比较表明,PRA1的C末端区域与最高亲和力结合Zn(II),表明锌的该区域负责锌的结合。这些知识是对锌的基本生物硼化学化学的输入;它允许我们了解Zincophores的无机生物化学,它可能是一种基于Zincophores的部分与抗真菌药物联系的Zincophores的新的真菌特异性治疗的踏脚石。

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