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Amyloidogenic Regions and Interaction Surfaces Overlap in Globular Proteins Related to Conformational Diseases

机译:与构象性疾病有关的球蛋白中的淀粉样蛋白生成区和相互作用表面重叠

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摘要

Protein aggregation underlies a wide range of human disorders. The polypeptides involved in these pathologies might be intrinsically unstructured or display a defined 3D-structure. Little is known about how globular proteins aggregate into toxic assemblies under physiological conditions, where they display an initially folded conformation. Protein aggregation is, however, always initiated by the establishment of anomalous protein-protein interactions. Therefore, in the present work, we have explored the extent to which protein interaction surfaces and aggregation-prone regions overlap in globular proteins associated with conformational diseases. Computational analysis of the native complexes formed by these proteins shows that aggregation-prone regions do frequently overlap with protein interfaces. The spatial coincidence of interaction sites and aggregating regions suggests that the formation of functional complexes and the aggregation of their individual subunits might compete in the cell. Accordingly, single mutations affecting complex interface or stability usually result in the formation of toxic aggregates. It is suggested that the stabilization of existing interfaces in multimeric proteins or the formation of new complexes in monomeric polypeptides might become effective strategies to prevent disease-linked aggregation of globular proteins.
机译:蛋白质聚集是多种人类疾病的基础。这些病理学中涉及的多肽可能本质上是非结构化的或显示出定义的3D结构。关于球状蛋白如何在生理条件下聚集成有毒的装配体,人们知之甚少,在那里它们表现出最初的折叠构象。然而,蛋白质聚集总是由异常蛋白质-蛋白质相互作用的建立引发的。因此,在目前的工作中,我们探索了与构象性疾病相关的球状蛋白质中蛋白质相互作用表面和易聚集区域重叠的程度。由这些蛋白质形成的天然复合物的计算分析表明,容易聚集的区域确实经常与蛋白质界面重叠。相互作用位点和聚集区域的空间重合表明功能复合物的形成及其单个亚基的聚集可能在细胞中竞争。因此,影响复杂界面或稳定性的单个突变通常导致毒性聚集体的形成。建议多聚体蛋白质中现有界面的稳定或单体多肽中新复合物的形成可能成为预防疾病相关的球状蛋白质聚集的有效策略。

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