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Modularity in Protein Evolution: Modular Organization and De Novo Domain Evolution in Mollusk Metallothioneins

机译:蛋白质进化中的模块性:MOLLUSK Metallothioneins的模块化组织和De Novo域演化

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摘要

Metallothioneins (MTs) are proteins devoted to the control of metal homeostasis and detoxification, and therefore, MTs have been crucial for the adaptation of the living beings to variable situations of metal bioavailability. The evolution of MTs is, however, not yet fully understood, and to provide new insights into it, we have investigated the MTs in the diverse classes of Mollusks. We have shown that most molluskan MTs are bimodular proteins that combine six domains—α, β1, β2, β3, γ, and δ—in a lineage-specific manner. We have functionally characterized the Neritimorpha β3β1 and the Patellogastropoda γβ1 MTs, demonstrating the metal-binding capacity of the new γ domain. Our results have revealed a modular organization of mollusk MT, whose evolution has been impacted by duplication, loss, and de novo emergence of domains. MTs represent a paradigmatic example of modular evolution probably driven by the structural and functional requirements of metal binding.
机译:Metallothioneins(MTS)是致力于控制金属稳态和解毒的蛋白质,因此,MTS对于将活性生物的改编至可变金属生物利用度的情况至关重要。然而,MTS的演变尚未完全理解,并为其提供新的见解,我们在不同类别的软体动物中调查了MTS。我们已经表明,大多数软体动物KAN MTS是双模蛋白,其将六个域-α,β1,β2,β3,γ和δ以谱系特异性的方式组合。我们在功能上表现了NeritiMorphaβ3β1和Patellogastropodaγβ1MT,证明了新γ结构域的金属结合能力。我们的结果揭示了MOLLUSK MT的模块化组织,其演变受到域的重复,损失和DE Novo出现的影响。 MTS表示模块化演化的范式示例,可能是由金属结合的结构和功能要求驱动的。

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