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Mechanics of Hsp70 chaperones enables differential interaction with client proteins

机译:Hsp70分子伴侣的机制使与客户蛋白质的差异相互作用成为可能

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摘要

Hsp70 chaperones interact with a wide spectrum of substrates ranging from unfolded to natively folded and aggregated proteins. Structural evidence suggests that bound substrates are entirely enclosed in a β-sheet cavity covered by a helical lid, which requires structural rearrangements including lid opening to allow substrate access. We analyzed the mechanics of the lid movement of bacterial DnaK by disulfide fixation of lid elements to the β-sheet and by electron paramagnetic resonance spectroscopy using spin labels in the lid and β-sheet. Our results indicate that the lid-forming helix B adopts at least three conformational states and, notably, does not close over bound proteins, implying that DnaK does not only bind to extended peptide stretches of protein substrates but can also accommodate regions with substantial tertiary structure. This flexible binding mechanism provides a basis for the broad spectrum of substrate conformers of Hsp70s.
机译:Hsp70分子伴侣与广泛的底物相互作用,范围从未折叠的蛋白质到天然折叠的蛋白质。结构证据表明,结合的基质被完全包封在由螺旋盖覆盖的β片状腔中,这需要进行结构重排,包括打开盖子以允许基质进入。我们分析了细菌DnaK的盖运动,其机制是将盖元件二硫键固定在β-折叠层上,并通过电子顺磁共振波谱分析,使用盖子和β-折叠中的自旋标记。我们的结果表明,形成盖子的螺旋B至少具有三种构象状态,并且特别是不会封闭结合的蛋白质,这意味着DnaK不仅结合了蛋白质底物的延伸肽段,而且还可以容纳具有实质三级结构的区域。这种灵活的结合机制为Hsp70s广泛的底物构象异构体提供了基础。

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