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首页> 外文期刊>Journal of Molecular Biology >Ligand Binding Site Structure Shapes Folding, Assembly and Degradation of Homomeric Protein Complexes
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Ligand Binding Site Structure Shapes Folding, Assembly and Degradation of Homomeric Protein Complexes

机译:配体结合位点结构形状折叠,组装和均质蛋白质复合物的降解

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摘要

Ligand binding site structure has profound consequences for the evolution of function of protein complexes, particularly in homomers-complexes comprising multiple copies of the same protein. Previously, we have shown that homomers with multichain binding sites (MBSs) are characterized by more conserved binding sites and quaternary structure, and qualitatively different allosteric pathways than homomers with single-chain binding sites (SBSs) or monomers. Here, using computational methods, we show that the folds of single domain MBS and SBS homomers are different, and SBS homomers are likely to be folded cotranslationally, while MBS homomers are more likely to form post-translationally and rely on more advanced folding assistance and quality control mechanisms, which include chaperonins. In addition, our findings demonstrate that MBS homomers are qualitatively different from monomers, while SBS homomers are much less distinct, supporting the hypothesis that the evolution of quaternary structure in SBS homomers is significantly influenced by stochastic processes. (C) 2019 The Author(s). Published by Elsevier Ltd.
机译:配体结合位点结构对蛋白质复合物的功能的演变具有深刻的后果,特别是在包含相同蛋白质的多个拷贝的均多复合物中。以前,我们已经表明,具有七种结合位点(MBS)的偶代构的特征在于更保守的结合位点和季结构,以及比具有单链结合位点(SBSS)或单体的偶代主义者的定性不同的颠覆途径。在这里,使用计算方法,我们表明单一域MB和SBS均方的折叠不同,并且SBS均方可能被折叠平衡,而MBS均多更有可能形成翻译后并依赖更先进的折叠辅助和更先进的折叠辅助质量控制机制包括伴侣素。此外,我们的研究结果表明,MBS均多与单体定性不同,而SBS均方则不太明显,支持SBS均方中季结构的演变的假设受到随机过程的显着影响。 (c)2019年作者。 elsevier有限公司出版

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