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Native Structure Protects SUMO Proteins from Aggregation into Amyloid Fibrils

机译:天然结构保护SUMO蛋白免于聚集成淀粉样原纤维

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摘要

SUMO proteins belong to the Ubiquitin-like protein family, all sharing a common fold and a similar mechanism of conjugation to target polypeptides. SUMO is ubiquitous in all eukaryotes and participates in many crucial pathways. Native SUMO proteins are highly soluble, a property that is exploited in biotechnology. Moreover, SUMO regulates the solubility of aggregation-prone proteins in neurodegenerative, disorders. Despite these properties, we show here that human SUMO1, SUM02, and SUM03 proteins are at risk of aggregation into amyloid structures iftheir native conformation is perturbed. Aggregation is mediated by specific regions, which overlap with SUMO functional interfaces, illustrating a competition between function and aggregation. Aggregation of SUMOs might have important physiological implications because disruption of the SUMO pathway is lethal in different organisms. It appears that functional constraints make it difficult to avoid the competition between productive folding and deleterious aggregation in globular proteins, even for essential polypeptides.
机译:SUMO蛋白属于泛素样蛋白家族,均具有相同的折叠倍数和与靶多肽结合的相似机制。 SUMO在所有真核生物中无处不在,并参与许多关键途径。天然SUMO蛋白是高度可溶的,这一特性已在生物技术中得到利用。此外,SUMO调节易于聚集的蛋白质在神经变性疾病中的溶解度。尽管具有这些特性,但我们在这里显示,如果人类SUMO1,SUM02和SUM03蛋白的天然构象受到干扰,则存在聚集成淀粉样蛋白结构的风险。聚集由与SUMO功能界面重叠的特定区域介导,从而说明了功能与聚集之间的竞争。 SUMO的聚集可能具有重要的生理意义,因为SUMO途径的破坏在不同生物中是致命的。似乎功能限制使得很难避免球状蛋白质中有效折叠和有害聚集之间的竞争,即使对于必需多肽也是如此。

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