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Yeast prions assembly and propagation: Contributions of the prion and non-prion moieties and the nature of assemblies

机译:酵母病毒的组装和繁殖:the病毒和非-病毒部分的贡献以及组装的性质

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摘要

Yeast prions are self-perpetuating protein aggregates that are at the origin of heritable and transmissible non-Mendelian phenotypic traits. Among these, [PSI+], [URE3] and [PIN+] are the most well documented prions and arise from the assembly of Sup35p, Ure2p and Rnq1p, respectively, into insoluble fibrillar assemblies. Fibril assembly depends on the presence of N- or C-terminal prion domains (PrDs) which are not homologous in sequence but share unusual amino-acid compositions, such as enrichment in polar residues (glutamines and asparagines) or the presence of oligopeptide repeats. Purified PrDs form amyloid fibrils that can convert prion-free cells to the prion state upon transformation. Nonetheless, isolated PrDs and full-length prion proteins have different aggregation, structural and infectious properties. In addition, mutations in the "non-prion" domains (non-PrDs) of Sup35p, Ure2p and Rnq1p were shown to affect their prion properties in vitro and in vivo. Despite these evidences, the implication of the functional non-PrDs in fibril assembly and prion propagation has been mostly overlooked. In this review, we discuss the contribution of non-PrDs to prion assemblies, and the structure-function relationship in prion infectivity in the light of recent findings on Sup35p and Ure2p assembly into infectious fibrils from our laboratory and others.
机译:酵母病毒是自我永存的蛋白质聚集体,是可遗传和可传播的非孟德尔表型性状的起源。其中,[PSI +],[URE3]和[PIN +]是最有据可查的病毒,它们分别来自Sup35p,Ure2p和Rnq1p组装为不溶性原纤维组装体。原纤维的组装取决于序列上不同源但共享不同寻常氨基酸组成的N或C末端ion蛋白结构域(PrDs),例如极性残基(谷氨酰胺和天冬酰胺)的富集或寡肽重复序列的存在。纯化的PrDs形成淀粉样原纤维,可在转化后将无病毒的细胞转化为the病毒状态。尽管如此,分离的PrD和全长的病毒蛋白具有不同的聚集,结构和感染特性。此外,显示Sup35p,Ure2p和Rnq1p的“非pr病毒”结构域(non-PrDs)中的突变会影响它们在体外和体内的病毒特性。尽管有这些证据,但功能性非PrDs在原纤维组装和病毒繁殖中的作用已被大多数人忽略了。在这篇综述中,我们将结合我们实验室和其他机构对Sup35p和Ure2p组装成传染性原纤维的最新发现,讨论非PrDs对病毒组装体的贡献以及in病毒感染性的结构-功能关系。

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