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Interdependence of amyloid formation in yeast Implications for polyglutamine disorders and biological functions

机译:酵母中淀粉样蛋白形成的相互依赖性对聚谷氨酰胺疾病和生物学功能的影响

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In eukaryotic cells amyloid aggregates may incorporate various functionally unrelated proteins. In mammalian diseases this may cause amyloid toxicity, while in yeast this could contribute to prion phenotypes. Insolubility of amyloids in the presence of strong ionic detergents, such as SDS or sarcosyl, allows discrimination between amorphous and amyloid aggregates. Here, we used this property of amyloids to study the interdependence of their formation in yeast. We observed that SDS-resistant polymers of proteins with extended polyglutamine domains caused the appearance of SDS or sarcosyl-insoluble polymers of three tested chromosomally-encoded Q/N-rich proteins, Sup35, Rnq1 and Pub1. These polymers were non-heritable, since they could not propagate in the absence of polyglutamine polymers. Sup35 prion polymers caused the appearance of non-heritable sarcosyl-resistant polymers of Pub1. Since eukaryotic genomes encode hundreds of proteins with long Q/N-rich regions, polymer interdependence suggests that conversion of a single protein into polymer form may significantly affect cell physiology by causing partial transfer of other Q/N-rich proteins into a non-functional polymer state.
机译:在真核细胞中,淀粉样蛋白聚集体可以掺入各种功能上不相关的蛋白质。在哺乳动物疾病中,这可能会引起淀粉样蛋白毒性,而在酵母中,这可能会导致病毒的表型。淀粉样蛋白在强离子去污剂(例如SDS或sarcosyl)存在下的不溶性可区分无定形和淀粉样蛋白聚集体。在这里,我们利用淀粉样蛋白的这种特性来研究它们在酵母中形成的相互依赖性。我们观察到具有扩展的聚谷氨酰胺结构域的蛋白质的SDS抗性聚合物导致出现了三种经染色体编码的富含Q / N的蛋白质Sup35,Rnq1和Pub1的SDS或肌氨酸不溶性聚合物。这些聚合物是不可遗传的,因为在没有聚谷氨酰胺聚合物的情况下它们不能繁殖。 Sup35 ion病毒聚合物导致Pub1出现不可遗传的抗肌氨酸的聚合物。由于真核基因组编码数百个具有长Q / N丰富区域的蛋白质,因此聚合物相互依赖性表明,单个蛋白质转化为聚合物形式可能会引起其他富含Q / N的蛋白质部分转移到非功能性蛋白质,从而显着影响细胞生理。聚合物状态。

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