首页> 美国卫生研究院文献>Genetics >Primate Chaperones Hsc70 (Constitutive) and Hsp70 (Induced) Differ Functionally in Supporting Growth and Prion Propagation in Saccharomyces cerevisiae
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Primate Chaperones Hsc70 (Constitutive) and Hsp70 (Induced) Differ Functionally in Supporting Growth and Prion Propagation in Saccharomyces cerevisiae

机译:灵长类动物伴侣Hsc70(组成型)和Hsp70(诱导型)在酿酒酵母生长和Pri毒繁殖方面功能不同

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摘要

Hsp70's are highly conserved essential protein chaperones that assist protein folding and prevent protein aggregation. They have modular structures consisting of ATPase, substrate-binding, and C-terminal domains. Substrate binding and release is regulated by ATP hydrolysis and nucleotide exchange, which in turn are regulated by cochaperones. Eukaryotes have constitutive (Hsc70) and stress-inducible (iHsp70) isoforms, but their functions have not been systematically compared. Using a yeast system to evaluate heterologous Hsp70's we find that primate Hsc70 supported growth but iHsp70 did not. Plant Hsc70 and iHsp70 counterparts behaved similarly, implying evolutionary conservation of this distinction. Swapping yeast and primate Hsp70 domains showed that (i) the Hsc70–iHsp70 distinction resided in the ATPase domain, (ii) substrate-binding domains of Hsp70's within and across species functioned similarly regarding growth, (iii) C-terminal domain function was important for growth, and (iv) Hsp70 functions important for cell growth and prion propagation were separable. Enzymatic analysis uncovered a correlation between substrate affinity and prion phenotype and showed that ATPase and protein-folding activities were generally similar. Our data support a view that intrinsic activities of Hsp70 isoforms are comparable, and functional differences in vivo lie mainly in complex interactions of Hsp70 with cochaperones.
机译:Hsp70是高度保守的必需蛋白伴侣,可帮助蛋白折叠并防止蛋白聚集。它们具有由ATPase,底物结合和C端结构域组成的模块结构。底物的结合和释放受ATP水解和核苷酸交换的调节,而ATP水解和核苷酸交换又受陪伴酮的调节。真核生物具有组成型(Hsc70)和应激诱导型(iHsp70)亚型,但尚未对其功能进行系统比较。使用酵母系统评估异源Hsp70,我们发现灵长类Hsc70支持生长,而iHsp70不支持。植物Hsc70和iHsp70的对应物表现相似,这意味着该区别的进化保守性。交换酵母和灵长类动物Hsp70结构域显示(i)Hsc70–iHsp70区别存在于ATPase结构域中;(ii)物种内和跨物种的Hsp70的底物结合结构域在生长方面的功能相似,(iii)C端结构域功能很重要(iv)对细胞生长和病毒繁殖重要的Hsp70功能是可分离的。酶促分析揭示了底物亲和力与病毒表型之间的相关性,并表明ATPase和蛋白质折叠活性通常相似。我们的数据支持这样一种观点,即Hsp70亚型的内在活性是可比的,并且体内的功能差异主要在于Hsp70与伴侣蛋白的复杂相互作用。

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