Banwait Jaskamaljot Kaur, Lucius Aaron L
Department of Chemistry, University of Alabama at Birmingham, Birmingham, Alabama.
Department of Chemistry, University of Alabama at Birmingham, Birmingham, Alabama.
Biophys J. 2025 Mar 4;124(5):753-764. doi: 10.1016/j.bpj.2025.01.016. Epub 2025 Jan 24.
The Hsp100 family of protein disaggregases plays important roles in maintaining protein homeostasis in cells. E. coli ClpB is an Hsp100 protein that solubilizes protein aggregates. ClpB is proposed to couple the energy from ATP binding and hydrolysis to processively unfold and translocate protein substrates through its axial channel in the hexameric ring structure. However, many of the details of this reaction remain obscure. We have recently developed a transient state kinetics approach to study ClpB catalyzed protein unfolding and translocation. In the work reported here we have used the approach to examine how ATP is coupled to the protein unfolding reaction. Here we show that at saturating [ATP], ClpB induces the cooperative unfolding of a complete Titin I27 domain of 98 amino acids, which is represented by our measured kinetic step size m ∼ 100 amino acids. This unfolding event is followed by rapid and undetected translocation up to the next folded domain. At subsaturating [ATP], ClpB induces cooperative unfolding of a complete Titin I27 domain but translocation becomes partially rate limiting, which leads to an apparent reduced kinetic step size as small as ∼50 amino acids. Furthermore, we show that ClpB exhibits an unfolding processivity of P = 0.74 ± 0.06 independent of [ATP]. These findings advance our understanding of the ATP coupling to enzyme catalyzed protein unfolding by E. coli ClpB and present a strategy that is broadly applicable to a variety of Hsp100 family members and AAA+ superfamily members.
热休克蛋白100家族的蛋白质解聚酶在维持细胞内蛋白质稳态方面发挥着重要作用。大肠杆菌ClpB是一种可溶解蛋白质聚集体的热休克蛋白100。有人提出,ClpB将ATP结合和水解产生的能量与通过其六聚体环结构中的轴向通道逐步展开和转运蛋白质底物相偶联。然而,该反应的许多细节仍不清楚。我们最近开发了一种瞬态动力学方法来研究ClpB催化的蛋白质展开和转运。在本文报道的工作中,我们使用该方法研究了ATP如何与蛋白质展开反应相偶联。在这里我们表明,在ATP饱和浓度下,ClpB诱导98个氨基酸的完整肌联蛋白I27结构域协同展开,这由我们测量的动力学步长m ∼ 100个氨基酸表示。这种展开事件之后是快速且未检测到的转运,直至下一个折叠结构域。在ATP亚饱和浓度下,ClpB诱导完整的肌联蛋白I27结构域协同展开,但转运部分成为限速步骤,这导致表观动力学步长减小至 ∼50个氨基酸。此外,我们表明ClpB表现出P = 0.7 ± 0.06的展开持续性,与ATP浓度无关。这些发现推进了我们对ATP与大肠杆菌ClpB催化的蛋白质展开相偶联的理解,并提出了一种广泛适用于各种热休克蛋白100家族成员和AAA+超家族成员的策略。