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Key features of an Hsp70 chaperone allosteric landscape revealed by ion-mobility native mass spectrometry and double electron-electron resonance

机译:Hsp70伴侣变构构图的关键特征通过离子淌度原生质谱和双电子-电子共振揭示

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摘要

Proteins are dynamic entities that populate conformational ensembles, and most functions of proteins depend on their dynamic character. Allostery, in particular, relies on ligand-modulated shifts in these conformational ensembles. Hsp70s are allosteric molecular chaperones with conformational landscapes that involve large rearrangements of their two domains (viz. the nucleotide-binding domain and substrate-binding domain) in response to adenine nucleotides and substrates. However, it remains unclear how the Hsp70 conformational ensemble is populated at each point of the allosteric cycle and how ligands control these populations. We have mapped the conformational species present under different ligand-binding conditions throughout the allosteric cycle of the Escherichia coli Hsp70 DnaK by two complementary methods, ion-mobility mass spectrometry and double electron-electron resonance. Our results obtained under biologically relevant ligand-bound conditions confirm the current picture derived from NMR and crystallographic data of domain docking upon ATP binding and undocking in response to ADP and substrate. Additionally, we find that the helical lid of DnaK is a highly dynamic unit of the structure in all ligand-bound states. Importantly, we demonstrate that DnaK populates a partially docked state in the presence of ATP and substrate and that this state represents an energy minimum on the DnaK allosteric landscape. Because Hsp70s are emerging as potential drug targets for many diseases, fully mapping an allosteric landscape of a molecular chaperone like DnaK will facilitate the development of small molecules that modulate Hsp70 function via allosteric mechanisms.
机译:蛋白质是构成构象集合的动态实体,蛋白质的大多数功能取决于其动态特性。特别地,变构依赖于这些构象集合中的配体调节的转变。 Hsp70s是具有构象构象的变构分子伴侣,响应腺嘌呤核苷酸和底物,涉及其两个结构域(即核苷酸结合结构域和底物结合结构域)的较大重排。但是,尚不清楚在变构循环的每个点如何填充Hsp70构象集合以及配体如何控制这些种群。我们已经通过两种互补的方法,离子迁移质谱和双电子-电子共振,绘制了在大肠杆菌Hsp70 DnaK的变构循环中,在不同配体结合条件下存在的构象物种。我们在生物学相关配体结合条件下获得的结果证实了目前的图片,这些图片来自NMR和ATP结合的结构域对接的晶体学数据,响应于ADP和底物的解离。此外,我们发现DnaK的螺旋盖是在所有配体结合状态下结构的高度动态单位。重要的是,我们证明了DnaK在ATP和底物存在的情况下构成了部分对接的状态,并且该状态代表DnaK变构构图上的最低能量。由于Hsp70逐渐成为许多疾病的潜在药物靶标,因此完全绘制分子伴侣(如DnaK)的变构构图将有助于发展通过变构机制调节Hsp70功能的小分子。

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