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A Systematic Evaluation of the Function of the Protein-Remodeling Factor Hsp104 in PSI+ Prion Propagation in S. cerevisiae by Comprehensive Chromosomal Mutations

机译:蛋白质重整因子Hsp104在酿酒酵母中PSI + on病毒繁殖中的功能通过综合染色体突变的系统评价

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摘要

The yeast prion [PSI+] represents an aggregated state of the translational release factor Sup35 (eRF3) and deprives termination complexes of functional Sup35, resulting in nonsense codon suppression. Protein-remodeling factor Hsp104 is involved in thermotolerance and [PSI+] propagation, however the structure-and-function relationship of Hsp104 for [PSI+] remains unclear. In this study, we engineered 58 chromosomal hsp104 mutants that affect residues considered structurally or functionally relevant to Hsp104 remodeling activity, yet most remain to be examined for their significance to [PSI+] in the same genetic background. Many of these hsp104 mutants were affected both in thermotolerance and [PSI+] propagation. However, nine mutants were impaired exclusively for [PSI+], while two mutants were impaired exclusively for thermotolerance. Mutations exclusively affecting [PSI+] are clustered around the lateral channel of the Hsp104 hexamer. These findings suggest that Hsp104 possesses shared as well as distinct remodeling activities for stress-induced protein aggregates and [PSI+] prion aggregates and that the lateral channel plays a role specific to [PSI+] prion propagation.
机译:酵母病毒[PSI + ]代表翻译释放因子Sup35(eRF3)的聚集状态,剥夺了功能性Sup35的终止复合物,导致无意义的密码子抑制。蛋白质重塑因子Hsp104参与耐热性和[PSI + ]的传播,但是Hsp104与[PSI + ]的结构与功能的关系尚不清楚。在这项研究中,我们设计了58个染色体hsp104突变体,这些突变体影响在结构或功能上与Hsp104重塑活性相关的残基,但在相同的遗传背景下,大多数突变体对[PSI + ]的意义仍有待检验。这些hsp104突变体中的许多突变体在耐热性和[PSI + ]繁殖上均受到影响。但是,有9个突变体仅因[PSI + ]而受损,而2个突变体仅因耐热性而受损。专门影响[PSI + ]的突变聚集在Hsp104六聚体的横向通道周围。这些发现表明,Hsp104对应激诱导的蛋白质聚集体和[PSI + ] ion病毒聚集体具有共同的以及独特的重塑活性,并且横向通道对[PSI + < / sup>] ion病毒传播。

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