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首页> 外文期刊>Molecular biology of the cell >Substrate binding by the yeast Hsp110 nucleotide exchange factor and molecular chaperone Sse1 is not obligate for its biological activities
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Substrate binding by the yeast Hsp110 nucleotide exchange factor and molecular chaperone Sse1 is not obligate for its biological activities

机译:酵母Hsp110核苷酸交换因子和分子伴侣Sse1的底物结合对其生物活性不是必需的

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摘要

The highly conserved heat shock protein 70 (Hsp70) is a ubiquitous molecular chaperone essential for maintaining cellular protein homeostasis. The related protein Hsp110 (Sse1/Sse2 in Saccharomyces cerevisiae ) functions as a nucleotide exchange factor (NEF) to regulate the protein folding activity of Hsp70. Hsp110/Sse1 also can prevent protein aggregation in vitro via its substrate-binding domain (SBD), but the cellular roles of this “holdase” activity are poorly defined. We generated and characterized an Sse1 mutant that separates, for the first time, its nucleotide exchange and substrate-binding functions. Sse1sbd retains nucleotide-binding and nucleotide exchange activities while exhibiting severe deficiencies in chaperone holdase activity for unfolded polypeptides. In contrast, we observed no effect of the SBD mutation in reconstituted disaggregation or refolding reactions in vitro. In vivo, Sse1sbd successfully heterodimerized with the yeast cytosolic Hsp70s Ssa and Ssb and promoted normal growth, with the exception of sensitivity to prolonged heat but not other proteotoxic stress. Moreover, Sse1sbd was fully competent to support Hsp90-dependent signaling through heterologously expressed glucocorticoid receptor and degradation of a permanently misfolded protein, two previously defined roles for Sse1. We conclude that despite conservation among eukaryotic homologues, chaperone holdase activity is not an obligate function in the Hsp110 family.
机译:高度保守的热休克蛋白70(Hsp70)是普遍存在的分子伴侣,对于维持细胞蛋白稳态至关重要。相关蛋白Hsp110(酿酒酵母中的Sse1 / Sse2)起核苷酸交换因子(NEF)的作用,调节Hsp70的蛋白折叠活性。 Hsp110 / Sse1还可以通过其底物结合结构域(SBD)阻止体外蛋白质的聚集,但是这种“保持酶”活性的细胞作用尚不清楚。我们生成并鉴定了Sse1突变体,该突变体首次分离了其核苷酸交换和底物结合功能。 Sse1 sbd 保留核苷酸结合和核苷酸交换活性,同时在未折叠多肽的分子伴侣保持酶活性上显示出严重缺陷。相反,我们没有观察到SBD突变在体外重组的分解或重折叠反应中没有作用。在体内,Sse1 sbd 与酵母胞质Hsp70s Ssa和Ssb成功异源二聚,并促进正常生长,但对长时间加热不敏感,但对其他蛋白毒性应激不敏感。此外,Sse1 sbd 完全有能力通过异源表达的糖皮质激素受体和永久错误折叠的蛋白质的降解支持Hsp90依赖性信号传导,这是Sse1的两个先前定义的作用。我们得出的结论是,尽管在真核同源物中有保守性,但在Hsp110家族中,伴侣蛋白保持酶活性不是必需的功能。

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