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Proline Substitution of Dimer Interface β-strand Residues as a Strategy for the Design of Functional Monomeric Proteins

机译:脯氨酸取代二聚体界面β链残基作为功能性单体蛋白设计的策略

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摘要

Proteins that exist in monomer-dimer equilibrium can be found in all organisms ranging from bacteria to humans; this facilitates fine-tuning of activities from signaling to catalysis. However, studying the structural basis of monomer function that naturally exists in monomer-dimer equilibrium is challenging, and most studies to date on designing monomers have focused on disrupting packing or electrostatic interactions that stabilize the dimer interface. In this study, we show that disrupting backbone H-bonding interactions by substituting dimer interface β-strand residues with proline (Pro) results in fully folded and functional monomers, by exploiting proline’s unique feature, the lack of a backbone amide proton. In interleukin-8, we substituted Pro for each of the three residues that form H-bonds across the dimer interface β-strands. We characterized the structures, dynamics, stability, dimerization state, and activity using NMR, molecular dynamics simulations, fluorescence, and functional assays. Our studies show that a single Pro substitution at the middle of the dimer interface β-strand is sufficient to generate a fully functional monomer. Interestingly, double Pro substitutions, compared to single Pro substitution, resulted in higher stability without compromising native monomer fold or function. We propose that Pro substitution of interface β-strand residues is a viable strategy for generating functional monomers of dimeric, and potentially tetrameric and higher-order oligomeric proteins.
机译:存在于单体-二聚体平衡中的蛋白质可以在从细菌到人类的所有生物中找到。这促进了从信号传递到催化活性的微调。然而,研究天然存在于单体-二聚体平衡中的单体功能的结构基础是具有挑战性的,迄今为止,关于设计单体的大多数研究都集中在破坏稳定二聚体界面的堆积或静电相互作用上。在这项研究中,我们表明通过利用脯氨酸的独特功能(缺乏骨架酰胺质子),通过用脯氨酸(Pro)取代二聚体界面β链残基来破坏骨架H键合相互作用会导致单体完全折叠且具有功能。在白介素8中,我们用Pro取代了在二聚体界面β链上形成H键的三个残基。我们使用NMR,分子动力学模拟,荧光和功能分析对结构,动力学,稳定性,二聚状态和活性进行了表征。我们的研究表明,在二聚体界面β链中间的单个Pro取代足以生成功能齐全的单体。有趣的是,与单Pro取代相比,双Pro取代具有更高的稳定性,而不会损害天然单体的折叠或功能。我们建议界面β链残基的Pro取代是一种可行的策略,用于生成二聚体,潜在的四聚体和更高阶的寡聚蛋白的功能单体。

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