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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Toward a property/function relationship for metallothioneins: histidine coordination and unusual cluster composition in a zinc-metallothionein from plants.
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Toward a property/function relationship for metallothioneins: histidine coordination and unusual cluster composition in a zinc-metallothionein from plants.

机译:建立金属硫蛋白的特性/功能关系:植物中锌金属硫蛋白中的组氨酸配位和异常簇组成。

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Early cysteine labeled (E(C)) proteins are plant metallothioneins, which were first identified in wheat embryos and are thought to be seed-specific. An exhaustive analysis of expressed sequence tag (EST) entries reveals that homologs are expressed in embryos of both classes of flowering plants (monocotyledons and dicotyledons), but also occur in conifers (gymnosperms) and seed-free spike moss (lycophyta). Mass spectrometric and elemental analysis results indicate that, contrary to the widely propagated number of five, E(C) binds predominantly six zinc ions in at least two zinc-thiolate clusters. 1H and 111Cd NMR experiments suggest that, in contrast to the majority of previously characterized metallothioneins, two conserved histidine residues participate in metal binding. The collected data is consistent with the presence of clusters unprecedented in metallothioneins so far. This novel cluster composition is accompanied by metal-binding properties that are substantially different from other metallothioneins; thus wheat E(C) binds zinc less strongly than either mammalian or cyanobacterial MTs. The unique biochemical properties of wheat E(C) render it ideally suited for a role in zinc donation to nascent proteins during seed development, a role that has been suggested based on the fact that E(C) is induced by the plant hormone abscisic acid, but not by heavy metals. Our results provide a step further toward developing a property/function relationship for metallothioneins.
机译:早期半胱氨酸标记的(E(C))蛋白是植物金属硫蛋白,最早在小麦胚中鉴定出来,并被认为具有种子特异性。对表达序列标签(EST)条目的详尽分析表明,同源物在两种开花植物(单子叶植物和双子叶植物)的胚胎中都有表达,但也存在于针叶树(裸子植物)和无种子的穗状苔藓(苔藓植物)中。质谱和元素分析结果表明,与广泛传播的5个相反,E(C)在至少两个硫醇酸锌簇中主要结合六个锌离子。 1H和111Cd NMR实验表明,与大多数先前表征的金属硫蛋白相反,两个保守的组氨酸残基参与金属结合。收集的数据与迄今为止在金属硫蛋白中前所未有的簇的存在相一致。这种新颖的簇组成具有与其他金属硫蛋白显着不同的金属结合性能。因此,小麦E(C)结合锌的强度不及哺乳动物或蓝细菌的MT。小麦E(C)的独特生化特性使其非常适合在种子发育过程中向新生蛋白质提供锌的作用,这一作用是基于植物激素脱落酸诱导E(C)的事实提出的,而不是重金属。我们的结果为开发金属硫蛋白的性质/功能关系提供了进一步的步骤。

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