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Specificity of the J-protein Sis1 in the propagation of 3 yeast prions

机译:J蛋白Sis1在3种酵母病毒繁殖中的特异性

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摘要

Yeast prions, such as [PSI+], [RNQ+], and [URE3], are heritable elements formed by proteins capable of acquiring self-perpetuating conformations. Their propagation is dependent on fragmentation of the amyloid protein complexes formed to generate the additional seeds necessary for conversion of nascent soluble protein to the prion conformation. We report that, in addition to its known role in [RNQ+] propagation, Sis1, a J-protein cochaperone of Hsp70 Ssa, is also specifically required for propagation of [PSI+] and [URE3]. Whereas both [RNQ+] and [URE3] are cured rapidly upon SIS1 repression, [PSI+] loss is markedly slower. This disparity cannot be explained simply by differences in seed number, as [RNQ+] and [PSI+] are lost with similar kinetics upon inhibition of Hsp104, a remodeling protein required for propagation of all yeast prions. Rather, in the case of [PSI+], our results are consistent with the partial impairment, rather than the complete abolition, of fragmentation of prion complexes upon Sis1 depletion. We suggest that a common set of molecular chaperones, the J-protein Sis1, the Hsp70 Ssa, and the AAA+ ATPase Hsp104, act sequentially in the fragmentation of all yeast prions, but that the threshold of Sis1 activity required for each prion varies.
机译:酵母病毒,例如[PSI + ],[RNQ + ]和[URE3],是由能够获得自我延续构象的蛋白质形成的可遗传元件。它们的繁殖取决于淀粉状蛋白复合物的断裂,该淀粉状蛋白复合物的形成是为了产生将新生的可溶性蛋白转化为to病毒构象所必需的另外的种子。我们报告说,除了其在[RNQ + ]繁殖中的已知作用外,Hsp70 Ssa的J蛋白伴侣分子Sis1也特别需要[PSI + ]和[URE3]。抑制SIS1后[RNQ + ]和[URE3]都可以快速治愈,而[PSI + ]的损失明显更慢。这种差异不能简单地用种子数量的差异来解释,因为[RNQ + ]和[PSI + ]在抑制Hsp104(一种需要重塑的蛋白质)后会以相似的动力学失去。用于所有酵母病毒的繁殖。相反,在[PSI + ]的情况下,我们的结果与Sis1耗尽时of蛋白复合物的片段化部分受损而不是完全废除相符。我们建议一组共同的分子伴侣,J蛋白Sis1,Hsp70 Ssa和AAA + ATPase Hsp104,顺序作用于所有酵母蛋白的片段化,但是每个蛋白所需的Sis1活性阈值各不相同。

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