Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada.
Department of Chemistry, University of Toronto, Toronto, Ontario, Canada.
J Biol Chem. 2021 Jan-Jun;296:100069. doi: 10.1074/jbc.RA120.015459. Epub 2020 Nov 22.
Nickel is essential for the survival of the pathogenic bacteria Helicobacter pylori in the fluctuating pH of the human stomach. Due to its inherent toxicity and limited availability, nickel homeostasis is maintained through a network of pathways that are coordinated by the nickel-responsive transcription factor NikR. Nickel binding to H. pylori NikR (HpNikR) induces an allosteric response favoring a conformation that can bind specific DNA motifs, thereby serving to either activate or repress transcription of specific genes involved in nickel homeostasis and acid adaptation. Here, we examine how nickel induces this response using F-NMR, which reveals conformational and dynamic changes associated with nickel-activated DNA complex formation. HpNikR adopts an equilibrium between an open state and DNA-binding competent states regardless of nickel binding, but a higher level of dynamics is observed in the absence of metal. Nickel binding shifts the equilibrium toward the binding-competent states and decreases the mobility of the DNA-binding domains. The nickel-bound protein is then able to adopt a single conformation upon binding a target DNA promoter. Zinc, which does not promote high-affinity DNA binding, is unable to induce the same allosteric response as nickel. We propose that the allosteric mechanism of nickel-activated DNA binding by HpNikR is driven by conformational selection.
镍对于幽门螺旋杆菌在胃酸这种波动 pH 值环境中的存活是必需的。由于其固有的毒性和有限的可用性,镍稳态通过由镍响应转录因子 NikR 协调的途径网络来维持。镍与 H. pylori NikR(HpNikR)的结合诱导变构反应,有利于与特定 DNA 基序结合的构象,从而激活或抑制与镍稳态和酸适应相关的特定基因的转录。在这里,我们使用 F-NMR 来研究镍如何诱导这种反应,该技术揭示了与镍激活的 DNA 复合物形成相关的构象和动态变化。HpNikR 无论是否结合镍,都在开放状态和 DNA 结合能力状态之间达到平衡,但在没有金属的情况下观察到更高水平的动态性。镍结合将平衡向结合能力状态转移,并降低 DNA 结合结构域的迁移率。然后,镍结合的蛋白质在结合靶 DNA 启动子时能够采用单一构象。锌不能促进高亲和力 DNA 结合,因此无法像镍一样诱导相同的变构反应。我们提出,HpNikR 镍激活的 DNA 结合的变构机制是由构象选择驱动的。