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Walker-A threonine couples nucleotide occupancy with the chaperone activity of the AAA+ ATPase ClpB

机译:Walker-A苏氨酸将核苷酸占用与AAA + ATPase ClpB的伴侣活性结合

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摘要

Hexameric AAA+ ATPases induce conformational changes in a variety of macromolecules. AAA+ structures contain the nucleotide-binding P-loop with the Walker A sequence motif: GxxGxGK(T/S). A subfamily of AAA+ sequences contains Asn in the Walker A motif instead of Thr or Ser. This noncanonical subfamily includes torsinA, an ER protein linked to human dystonia and DnaC, a bacterial helicase loader. Role of the noncanonical Walker A motif in the functionality of AAA+ ATPases has not been explored yet. To determine functional effects of introduction of Asn into the Walker A sequence, we replaced the Walker-A Thr with Asn in ClpB, a bacterial AAA+ chaperone which reactivates aggregated proteins. We found that the T-to-N mutation in Walker A partially inhibited the ATPase activity of ClpB, but did not affect the ClpB capability to associate into hexamers. Interestingly, the noncanonical Walker A sequence in ClpB induced preferential binding of ADP vs. ATP and uncoupled the linkage between the ATP-bound conformation and the high-affinity binding to protein aggregates. As a consequence, ClpB with the noncanonical Walker A sequence showed a low chaperone activity in vitro and in vivo. Our results demonstrate a novel role of the Walker-A Thr in sensing the nucleotide's γ-phosphate and in maintaining an allosteric linkage between the P-loop and the aggregate binding site of ClpB. We postulate that AAA+ ATPases with the noncanonical Walker A might utilize distinct mechanisms to couple the ATPase cycle with their substrate-remodeling activity.
机译:六聚体AAA + ATPase诱导各种大分子的构象变化。 AAA +结构包含带有Walker A序列基序的核苷酸结合P环:GxxGxGK(T / S)。 AAA +序列的亚家族在Walker A母题中包含Asn,而不是Thr或Ser。这个非规范的亚家族包括TorsinA(一种与人肌张力障碍有关的ER蛋白)和DnaC(一种细菌解旋酶载体)。非规范性Walker A基序在AAA + ATPases功能中的作用尚未探索。为了确定将Asn引入Walker A序列的功能效果,我们用ClpB中的Asn取代了Walker-A Thr,ClpB是一种细菌AAA +伴侣分子,可以重新活化聚集的蛋白质。我们发现,Walker A中的T-N突变部分抑制了ClpB的ATPase活性,但没有影响ClpB缔合六聚体的能力。有趣的是,ClpB中的非经典Walker A序列诱导了ADP与ATP的优先结合,并解开了ATP结合的构象和与蛋白质聚集体的高亲和力结合之间的联系。结果,具有非经典Walker A序列的ClpB在体外和体内显示出较低的伴侣活性。我们的结果表明,Walker-A Thr在检测核苷酸的γ-磷酸和维持P环与ClpB的总结合位点之间的变构键合方面具有新型作用。我们假设具有非经典Walker A的AAA + ATPase可能利用独特的机制将ATPase循环与其底物重塑活性偶联。

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