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Hsp31 Is a Stress Response Chaperone That Intervenes in the Protein Misfolding Process

机译:Hsp31是一种干预蛋白质错误折叠过程的应激反应伴侣。

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摘要

The Saccharomyces cerevisiae heat shock protein Hsp31 is a stress-inducible homodimeric protein that is involved in diauxic shift reprogramming and has glyoxalase activity. We show that substoichiometric concentrations of Hsp31 can abrogate aggregation of a broad array of substrates in vitro. Hsp31 also modulates the aggregation of α-synuclein (αSyn), a target of the chaperone activity of human DJ-1, an Hsp31 homolog. We demonstrate that Hsp31 is able to suppress the in vitro fibrillization or aggregation of αSyn, citrate synthase and insulin. Chaperone activity was also observed in vivo because constitutive overexpression of Hsp31 reduced the incidence of αSyn cytoplasmic foci, and yeast cells were rescued from αSyn-generated proteotoxicity upon Hsp31 overexpression. Moreover, we showed that Hsp31 protein levels are increased by H2O2, in the diauxic phase of normal growth conditions, and in cells under αSyn-mediated proteotoxic stress. We show that Hsp31 chaperone activity and not the methylglyoxalase activity or the autophagy pathway drives the protective effects. We also demonstrate reduced aggregation of the Sup35 prion domain, PrD-Sup35, as visualized by fluorescent protein fusions. In addition, Hsp31 acts on its substrates prior to the formation of large aggregates because Hsp31 does not mutually localize with prion aggregates, and it prevents the formation of detectable in vitro αSyn fibrils. These studies establish that the protective role of Hsp31 against cellular stress is achieved by chaperone activity that intervenes early in the protein misfolding process and is effective on a wide spectrum of substrate proteins, including αSyn and prion proteins.
机译:酿酒酵母热休克蛋白Hsp31是一种应力诱导型同型二聚体蛋白,参与双性移位重编程并具有乙二醛酶活性。我们显示亚化学计量浓度的Hsp31可以消除体外广泛的底物聚集。 Hsp31还调节α-突触核蛋白(αSyn)的聚集,α-突触核蛋白是人DJ-1(Hsp31同源物)的伴侣活性的靶标。我们证明Hsp31能够抑制αSyn,柠檬酸合酶和胰岛素的体外原纤维化或聚集。在体内也观察到伴侣活性,因为Hsp31的组成型过表达降低了αSyn细胞质灶的发生率,并且在Hsp31过表达时,酵母细胞从αSyn产生的蛋白毒性中解救出来。此外,我们显示,在正常生长条件的双生期以及在αSyn介导的蛋白毒性胁迫下的细胞中,H2O2可增加Hsp31蛋白的水平。我们表明,Hsp31伴侣活性而不是甲基乙二醛酶活性或自噬途径驱动保护作用。我们还证明了减少的Sup35 domain病毒域,PrD-Sup35的聚集,如荧光蛋白融合所显示。另外,Hsp31在形成大聚集体之前先作用于其底物,因为Hsp31不会与病毒聚集体相互定位,并且阻止了可检测的体外αSyn原纤维的形成。这些研究证实,Hsp31对细胞应激的保护作用是通过在蛋白质错误折叠过程的早期介入的伴侣活性来实现的,并且对包括αSyn和病毒蛋白在内的多种底物蛋白均有效。

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