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首页> 外文期刊>Metallomics. integrated biometal science >Response of CnrX from Cupriavidus metallidurans CH34 to nickel binding
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Response of CnrX from Cupriavidus metallidurans CH34 to nickel binding

机译:金属利尿酵母CH34对CnrX的镍结合反应

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Resistance to high concentration of nickel ions is mediated in Cupriavidus metallidurans by the CnrCBA transenvelope efflux complex. Expression of the cnrCBA genes is regulated by the transmembrane signal transduction complex CnrYXH. Together, the metal sensor CnrX and the transmembrane antisigma factor CnrY control the availability of the extracytoplasmic function sigma factor CnrH. Release of CnrH from sequestration by CnrY at the cytoplasmic side of the membrane depends essentially on the binding of the agonist metal ion Ni(II) to the periplasmic metal sensor domain of CnrX. CnrH availability leads to transcription initiation at the promoters cnrYp and cnrCp and to the expression of the genes in the cnrYXHCBA nickel resistance determinant. The first steps of signal propagation by CnrX rely on subtle metal-dependent allosteric modifications. To study the nickel-mediated triggering process by CnrX, we have altered selected residues, F66, M123, and Y135, and explored the physiological consequences of these changes with respect to metal resistance, expression of a cnrCBA-lacZ reporter fusion and protein production. M123C- and Y135F-CnrXs have been further characterized in vitro by metal affinity measurements and crystallographic structure analysis. Atomic-resolution structures of metal-bound M123C- and Y135F-CnrXs showed that Ni(II) binds two of the three canonical conformations identified and that Ni(II) sensing likely proceeds by conformation selection.
机译:CnrCBA跨包膜外排复合物介导了对金属利尿铜霉中高浓度镍离子的抗性。 cnrCBA基因的表达受跨膜信号转导复合体CnrYXH的调节。金属传感器CnrX和跨膜抗西格玛因子CnrY共同控制胞外功能西格玛因子CnrH的可用性。 CnrH隔离在膜的细胞质侧释放CnrH基本上取决于激动剂金属离子Ni(II)与CnrX的周质金属传感器结构域的结合。 CnrH的可用性导致启动子cnrYp和cnrCp的转录起始,并导致cnrYXHCBA镍抗性决定簇中的基因表达。 CnrX传播信号的第一步依赖于微妙的金属依赖性变构修饰。为了研究CnrX介导的镍触发过程,我们改变了选定的残基F66,M123和Y135,并探讨了这些变化对金属抗性,cnrCBA-lacZ报告基因融合表达和蛋白质生产的生理影响。 M123C-和Y135F-CnrXs在体外已通过金属亲和力测量和晶体结构分析进一步表征。金属结合的M123C-和Y135F-CnrXs的原子分辨结构表明,Ni(II)结合了已鉴定的三个典型构象中的两个,并且Ni(II)可能通过构象选择进行传感。

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