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Modeling protein quaternary structure of homo- and hetero-oligomers beyond binary interactions by homology

机译:通过同源性模拟二元相互作用以外的同源和异源低聚物的蛋白质四级结构

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摘要

Cellular processes often depend on interactions between proteins and the formation of macromolecular complexes. The impairment of such interactions can lead to deregulation of pathways resulting in disease states, and it is hence crucial to gain insights into the nature of macromolecular assemblies. Detailed structural knowledge about complexes and protein-protein interactions is growing, but experimentally determined three-dimensional multimeric assemblies are outnumbered by complexes supported by non-structural experimental evidence. Here, we aim to fill this gap by modeling multimeric structures by homology, only using amino acid sequences to infer the stoichiometry and the overall structure of the assembly. We ask which properties of proteins within a family can assist in the prediction of correct quaternary structure. Specifically, we introduce a description of protein-protein interface conservation as a function of evolutionary distance to reduce the noise in deep multiple sequence alignments. We also define a distance measure to structurally compare homologous multimeric protein complexes. This allows us to hierarchically cluster protein structures and quantify the diversity of alternative biological assemblies known today. We find that a combination of conservation scores, structural clustering, and classical interface descriptors, can improve the selection of homologous protein templates leading to reliable models of protein complexes.
机译:细胞过程通常取决于蛋白质之间的相互作用以及大分子复合物的形成。此类相互作用的障碍可能导致导致疾病状态的途径失调,因此,洞察大分子组装体的性质至关重要。关于复合物和蛋白质-蛋白质相互作用的详细结构知识正在增长,但是由非结构性实验证据支持的复合物的数量远远超过了实验确定的三维多聚体装配体。在这里,我们的目标是通过用同源性建模多聚体结构来填补这一空白,仅使用氨基酸序列来推断化学计量和装配的整体结构。我们问一个家族中蛋白质的哪些特性可以帮助预测正确的四级结构。具体来说,我们介绍了蛋白质-蛋白质界面保守性作为进化距离的函数的描述,以减少深度多序列比对中的噪音。我们还定义了一种距离度量,以在结构上比较同源多聚体蛋白复合物。这使我们能够对蛋白质结构进行分层聚类,并量化当今已知的其他生物组装的多样性。我们发现,保守评分,结构聚类和经典界面描述符的组合可以改善同源蛋白质模板的选择,从而形成可靠的蛋白质复合物模型。

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