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Localization and functional characterization of metal-binding sites in phytochelatin synthases

机译:植物螯合酶合酶中金属结合位点的定位和功能表征

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Metal-binding domains consisting of short, contiguous stretches of amino acids are found in many proteins mediating the transport, buffering, trafficking or detoxification of metal ions. Phytochelatin synthases are metal-activated enzymes that function in the detoxification of Cd2+ and other toxic metal and metalloid ions. In order to localize Cd2+-binding sites, peptide libraries of two diverse phytochelatin synthases were synthesized and incubated with 109Cd2+. Distinct binding sites and binding motifs could be localized based on the patterns of Cd2+-binding. The number of binding sites was consistent with previous findings for recombinant protein. Positions of binding sites appeared to be conserved even among diverse phytochelatin synthases. Mutant peptide analysis was used to assess the contribution of exemplary amino acids to binding. Several binding motifs contain cysteines or glutamates. For cysteines a strong correlation was found between binding activity and degree of conservation among known phytochelatin synthases. These findings indicate the suitability of peptide scanning for the identification of metal-binding sites. The functional role of several cysteines was investigated by expression of hemagglutinin-tagged phytochelatin synthases in phytochelatin synthase-deficient, Cd2+-hypersensitive Schizosaccharomyces pombe cells. The data are consistent with a model suggesting functionally essential metal-binding activation sites in the N-terminal catalytic part of phytochelatin synthases and additional binding sites at the C-terminus not essential for activity.
机译:在许多介导金属离子的运输,缓冲,运输或解毒的蛋白质中发现了由短而连续的氨基酸组成的金属结合域。植物螯合酶合酶是金属激活的酶,可对Cd2 + 和其他有毒金属和准金属离子进行解毒。为了定位Cd2 + 结合位点,合成了两种植物螯合酶合酶的肽库,并与109 Cd2 + 进行了孵育。根据Cd2 + 结合的模式,可以定位不同的结合位点和结合基序。结合位点的数目与重组蛋白的先前发现一致。即使在多种植物螯合酶合酶中,结合位点的位置也似乎是保守的。突变肽分析用于评估示例性氨基酸对结合的贡献。几个结合基序包含半胱氨酸或谷氨酸。对于半胱氨酸,在已知的植物螯合素合酶之间的结合活性和保守程度之间发现强烈的相关性。这些发现表明,肽扫描适合鉴定金属结合位点。通过血凝素标记的植物螯合酶合酶在缺乏植物螯合酶合酶,Cd2 +超敏感的裂殖酵母中的表达来研究几种半胱氨酸的功能。该数据与一个模型相符,该模型表明在植物螯合酶合酶的N末端催化部分中功能上必不可少的金属结合活化位点和在C端对活性不是必需的其他结合位点。

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