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首页> 外文期刊>Journal of Molecular Biology >Structural Basis of the Nickel Response in Helicobacter pylori: Crystal Structures of HpNikR in Apo and Nickel-bound States.
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Structural Basis of the Nickel Response in Helicobacter pylori: Crystal Structures of HpNikR in Apo and Nickel-bound States.

机译:幽门螺杆菌中镍反应的结构基础:Apo和镍结合状态下HpNikR的晶体结构。

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摘要

The survival of Helicobacter pylori in the human stomach critically relies on the availability and use of nickel, an absolute cofactor of the important virulence determinant urease. Nickel-responsive gene regulation is mediated by HpNikR, a protein belonging to the ribbon-helix-helix family of transcriptional regulators. Unlike its homologues, HpNikR acts as both a repressor and an activator within an acid adaptation cascade. We report the crystal structure of the full-length HpNikR in a nickel-free conformation and two nickel-bound structures obtained in different conditions: Ni1-HpNikR and Ni2-HpNikR. Apo-HpNikR shows the same global fold as its bacterial homologues although with an unusual closed trans-conformation and asymmetrical quaternary arrangement. The structure of Ni1-HpNikR in the presence of nickel has two different sides, one showing nickel binding similar to that of known NikRs and the other reflecting an intermediate state. The structure of Ni2-HpNikR obtained using a shorter exposure to nickel provides another snapshot of the nickel incorporation. Altogether, the three structures have allowed us to determine the route for nickel within HpNikR and reveal the cooperativity between the tetramerization domain and the DNA-binding domain. Experiments using point mutations of HpnikR residues involved in nickel internalisation confirm that these residues are critical for HpNikR functions in vivo.
机译:幽门螺杆菌在人胃中的存活关键取决于镍的可用性和使用,镍是重要的决定性脲酶的绝对辅助因子。镍反应性基因调控是由HpNikR介导的,HpNikR是一种蛋白质,属于转录调节带状-螺旋-螺旋家族。与它的同系物不同,HpNikR在酸适应级联反应中既起阻抑剂又起活化剂的作用。我们报告了全长HpNikR在无镍构象中的晶体结构,以及在不同条件下获得的两个镍结合结构:Ni1-HpNikR和Ni2-HpNikR。尽管具有不寻常的封闭反式构象和不对称四级排列,但Apo-HpNikR显示出与其细菌同源物相同的整体折叠。在存在镍的情况下,Ni1-HpNikR的结构具有两个不同的侧面,一个侧面显示的镍键结与已知的NikR相似,另一个侧面显示中间状态。使用较短的镍暴露时间获得的Ni2-HpNikR的结构提供了镍掺入的另一个快照。总之,这三个结构使我们能够确定HpNikR中镍的路线,并揭示四聚结构域和DNA结合结构域之间的协同作用。使用参与镍内在化的HpnikR残基的点突变进行的实验证实,这些残基对于体内HpNikR功能至关重要。

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