Department of Chemistry, University of Toronto, Toronto, Ontario, Canada M5S 3H6.
Biochemistry. 2010 Aug 10;49(31):6635-45. doi: 10.1021/bi100685k.
The Escherichia coli transcription factor NikR mediates two levels of regulatory control of Ni(II) uptake in response to changes in the levels of available nickel. Despite the evidence that metal binding to two distinct sites on NikR, referred to as the high- and low-affinity Ni(II) sites, is required for Ni(II)-selective DNA binding by the protein, the role of the latter set of Ni(II) ions in the activation of NikR remains controversial, and the position of the putative low-affinity Ni(II)-binding site(s) on NikR has not been determined. In this study we confirm that NikR has a high-affinity Ni(II)-binding site that is maintained upon DNA binding. The ligands of the low-affinity Ni(II)-binding site were examined by using selective chemical modification and mass spectrometry performed in the presence of excess Ni(II) and DNA. We localized this Ni(II) site to a region at the interface between the metal- and DNA-binding domains and identified His48 and His110 as residues that participate in the low-affinity Ni(II)-binding response. Mutation of His48 and His110 to asparagines reduces significantly both NikR's tendency to precipitate in the presence of excess Ni(II) and the affinity of the DNA-bound complex in the presence of excess Ni(II). A complete scheme involving all of the metal-binding sites that contribute to the regulatory function of E. coli NikR in nickel homeostasis is described.
大肠杆菌转录因子 NikR 介导了两个层次的调节控制,以响应可用镍水平的变化来调节镍(II)的摄取。尽管有证据表明,金属结合到 NikR 上两个不同的位点,即高亲和性和低亲和性 Ni(II) 结合位点,对于该蛋白对 Ni(II)选择性 DNA 结合是必需的,但后者的 Ni(II)离子在 NikR 激活中的作用仍然存在争议,并且 NikR 上假定的低亲和性 Ni(II)结合位点的位置尚未确定。在这项研究中,我们证实 NikR 具有高亲和性 Ni(II)结合位点,该位点在 DNA 结合后得以维持。通过在过量 Ni(II)和 DNA 存在的情况下进行选择性化学修饰和质谱分析,研究了低亲和性 Ni(II)结合位点的配体。我们将该 Ni(II)位点定位到金属和 DNA 结合域之间的界面区域,并确定 His48 和 His110 是参与低亲和性 Ni(II)结合反应的残基。将 His48 和 His110 突变为天冬酰胺,显著降低了 NikR 在过量 Ni(II)存在下沉淀的趋势,以及在过量 Ni(II)存在下 DNA 结合复合物的亲和力。描述了一个完整的方案,其中涉及所有有助于大肠杆菌 NikR 在镍稳态中发挥调节功能的金属结合位点。