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Compositional Determinants of Prion Formation in Yeast

机译:酵母中on离子形成的组成决定因素

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Numerous prions (infectious proteins) have been identified in yeast that result from the conversion of soluble proteins into β-sheet-rich amyloid-like protein aggregates. Yeast prion formation is driven primarily by amino acid composition. However, yeast prion domains are generally lacking in the bulky hydrophobic residues most strongly associated with amyloid formation and are instead enriched in glutamines and asparagines. Glutamine/asparagine-rich domains are thought to be involved in both disease-related and beneficial amyloid formation. These domains are overrepresented in eukaryotic genomes, but predictive methods have not yet been developed to efficiently distinguish between prion and nonprion glutamine/asparagine-rich domains. We have developed a novel in vivo assay to quantitatively assess how composition affects prion formation. Using our results, we have defined the compositional features that promote prion formation, allowing us to accurately distinguish between glutamine/asparagine-rich domains that can form prion-like aggregates and those that cannot. Additionally, our results explain why traditional amyloid prediction algorithms fail to accurately predict amyloid formation by the glutamine/asparagine-rich yeast prion domains.
机译:在酵母中已鉴定出许多病毒(感染性蛋白质),这是由于可溶性蛋白质转化为富含β-折叠的淀粉样蛋白聚集体所致。酵母病毒的形成主要由氨基酸组成驱动。然而,酵母病毒结构域通常缺乏与淀粉样蛋白形成最紧密相关的庞大的疏水残基,而是富含谷氨酰胺和天冬酰胺。谷氨酰胺/富含天冬酰胺的结构域被认为与疾病相关和有益的淀粉样蛋白形成有关。这些结构域在真核基因组中过分代表,但是尚未开发出预测方法来有效区分distinguish病毒和非non病毒谷氨酰胺/天冬酰胺丰富的结构域。我们已经开发了一种新颖的体内测定法,以定量评估成分如何影响病毒的形成。使用我们的结果,我们定义了促进病毒形成的组成特征,从而使我们能够准确地区分可以形成病毒样聚集体的谷氨酰胺/富含天冬酰胺的结构域和不能形成cannot蛋白的聚集体。此外,我们的结果解释了为什么传统的淀粉样蛋白预测算法无法通过富含谷氨酰胺/天冬酰胺的酵母病毒域准确预测淀粉样蛋白的形成。

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