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Highly Dynamic Interactions Maintain Kinetic Stability of the ClpXP Protease During the ATP-Fueled Mechanical Cycle

机译:高动态相互作用在aTp燃料机械循环期间保持ClpXp蛋白酶的动力学稳定性

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摘要

The ClpXP protease assembles in a reaction in which an ATP-bound ring hexamer of ClpX binds to one or both heptameric rings of the ClpP peptidase. Contacts between ClpX IGF-loops and clefts on a ClpP ring stabilize the complex. How ClpXP stability is maintained during the ATP-hydrolysis cycle that powers mechanical unfolding and translocation of protein substrates is poorly understood. Here, we use a real-time kinetic assay to monitor the effects of nucleotides on the assembly and disassembly of ClpXP. When ATP is present, complexes containing single-chain ClpX assemble via an intermediate and remain intact until transferred into buffers containing ADP or no nucleotides. ATP binding to high-affinity subunits of the ClpX hexamer prevents rapid dissociation, but additional subunits must be occupied to promote assembly. Small-molecule acyldepsipeptides, which compete with the IGF loops of ClpX for ClpP-cleft binding, cause exceptionally rapid dissociation of otherwise stable ClpXP complexes, suggesting that the IGF-loop interactions with ClpP must be highly dynamic. Our results indicate that the ClpX hexamer spends almost no time in an ATP-free state during the ATPase cycle, allowing highly processive degradation of protein substrates.
机译:ClpXP蛋白酶在反应中组装,其中ClpX的ATP结合环六聚体与ClpP肽酶的一个或两个七聚体环结合。 ClpX IGF环和ClpP环上的裂缝之间的接触使复合物稳定。人们很少了解如何在ATP水解循环中维持ClpXP稳定性,从而促进蛋白质底物的机械解折叠和易位。在这里,我们使用实时动力学分析来监测核苷酸对ClpXP组装和拆卸的影响。当存在ATP时,含有单链ClpX的复合物会通过中间体组装并保持完整,直到转移到含有ADP或不含核苷酸的缓冲液中。 ATP与ClpX六聚体的高亲和力亚基结合会阻止快速解离,但必须占用其他亚基以促进组装。与ClpX的IGF环竞争ClpP裂隙结合的小分子酰基肽肽会导致原本稳定的ClpXP复合物异常迅速地解离,这表明IGF环与ClpP的相互作用必须是高度动态的。我们的结果表明,ClpX六聚体在ATPase循环中几乎没有时间处于无ATP状态,从而允许蛋白质底物的高降解性降解。

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