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Evolution of binding sites for zinc and calcium ions playing structural roles.

机译:锌和钙离子结合位点的演变起结构作用。

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The geometry of metal coordination by proteins is well understood, but the evolution of metal binding sites has been less studied. Here we present a study on a small number of well-documented structural calcium and zinc binding sites, concerning how the geometry diverges between relatives, how often nonrelatives converge towards the same structure, and how often these metal binding sites are lost in the course of evolution. Both calcium and zinc binding site structure is observed to be conserved; structural differences between those atoms directly involved in metal binding in related proteins are typically less than 0.5 A root mean square deviation, even in distant relatives. Structural templates representing these conserved calcium and zinc binding sites were used to search the Protein Data Bank for cases where unrelated proteins have converged upon the same residue selection and geometry for metal binding. This allowed us to identify six "archetypal" metal binding site structures: two archetypal zincbinding sites, both of which had independently evolved on a large number of occasions, and four diverse archetypal calcium binding sites, where each had evolved independently on only a handful of occasions. We found that it was common for distant relatives of metal-binding proteins to lack metal-binding capacity. This occurred for 13 of the 18 metal binding sites we studied, even though in some of these cases the original metal had been classified as "essential for protein folding." For most of the calcium binding sites studied (seven out of eleven cases), the lack of metal binding in relatives was due to point mutation of the metal-binding residues, whilst for zinc binding sites, lack of metal binding in relatives always involved more extensive changes, with loss of secondary structural elements or loops around the binding site.
机译:蛋白质与金属配位的几何结构已广为人知,但对金属结合位点的演变却研究较少。在这里,我们对少量文献记载的钙和锌的结构结合位点进行研究,涉及几何形状如何在亲戚之间发散,非亲戚向同一结构收敛的频率以及这些金属结合位点在形成过程中丢失的频率。演化。钙和锌的结合位点结构都被观察到是保守的。在相关蛋白质中直接参与金属结合的那些原子之间的结构差异,即使在远亲中,也通常小于0.5 A均方根偏差。代表这些保守的钙和锌结合位点的结构模板被用于在蛋白质数据库中搜索不相关的蛋白质已经在相同的残基选择和几何形状上融合为金属结合的情况。这使我们能够鉴定出六个“原型”金属结合位点结构:两个原型锌结合位点,两个都在许多情况下独立地进化,以及四个不同的原型钙结合位点,每个都仅在少数几个上独立地进化。场合。我们发现,金属结合蛋白的远亲缺乏金属结合能力是很常见的。尽管在某些情况下原始金属已被归类为“蛋白质折叠所必需的”,但在我们研究的18个金属结合位点中有13个发生了这种情况。对于大多数研究的钙结合位点(11个病例中的七个),亲戚中金属结合的缺乏是由于金属结合残基的点突变引起的,而锌结合位点中,亲戚中金属结合的缺乏通常涉及更多广泛的变化,结合位点周围的二级结构元件或环丢失。

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