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Divergent Functional Properties of the Ribosome-Associated Molecular Chaperone Ssb Compared with Other Hsp70s

机译:核糖体相关分子伴侣Ssb与其他Hsp70s比较的不同功能特性。

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摘要

Ssbs of Saccharomyces cerevisiae are ribosome-associated molecular chaperones, which can be cross-linked to nascent polypeptide chains. Because Ssbs are members of a divergent subclass of Hsp70s found thus far only in fungi, we asked if the structural requirements for in vivo function were similar to those of “classic” Hsp70s. An intact peptide-binding domain is essential and an alteration of a conserved residue in the peptide-binding cleft (V442) affects function. However, Ssb tolerates a number of alterations in the peptide-binding cleft, revealing a high degree of flexibility in its functional requirements. Because binding of Ssb to peptide substrates in vitro was undetectable, we assessed the importance of substrate binding using the chimera BAB, in which the peptide binding domain of Ssb is exchanged for the analogous domain of the more “classical” Hsp70, Ssa. BAB, which binds peptide substrates in vitro, can substitute for Ssb in vivo. Alteration of a residue in the peptide-binding cleft of BAB creates a protein with a reduced affinity for peptide and altered ribosome binding that is unable to substitute for Ssb in vivo. These results indicate that Ssb's ability to bind unfolded polypeptides is likely critical for its function. This binding accounts, in part, for its stable interaction with translating ribosomes, even although it has a low affinity for peptides that detectably bind to other Hsp70s in vitro. These unusual properties may allow Ssb to function efficiently as a chaperone for ribosome-bound nascent chains.
机译:酿酒酵母的单链抗体是核糖体相关的分子伴侣,可以与新生的多肽链交联。由于Ssb是迄今为止仅在真菌中发现的Hsp70的一个不同亚类的成员,因此我们询问体内功能的结构要求是否与“经典” Hsp70的结构要求相似。完整的肽结合域是必不可少的,而肽结合裂隙(V442)中保守残基的改变会影响功能。但是,Ssb可以耐受肽结合裂隙中的许多变化,从而揭示了其功能需求的高度灵活性。由于无法检测到Ssb与肽底物的体外结合,因此我们使用嵌合BAB评估了底物结合的重要性,其中将Ssb的肽结合域交换为更“经典”的Hsp70 Ssa的类似域。体外结合肽底物的BAB可以在体内替代Ssb。 BAB的肽结合裂口中残基的改变产生了一种对肽的亲和力降低且核糖体结合改变的蛋白,该蛋白无法在体内替代Ssb。这些结果表明,Ssb结合未折叠多肽的能力可能对其功能至关重要。该结合部分地解释了其与翻译核糖体的稳定相互作用,即使它对可检测到与其他Hsp70s体外结合的肽具有低亲和力。这些不寻常的特性可能使Ssb可以有效地充当核糖体结合的新生链的伴侣。

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