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Iron-mediated Oxidation Induces Conformational Changes within the Redox-sensing Protein HbpS

机译:铁介导的氧化诱导氧化还原敏感蛋白HbpS内的构象变化。

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摘要

HbpS is an extracellular oligomeric protein, which has been shown to act in concert with the two-component system SenS-SenR during the sensing of redox stress. HbpS can bind and degrade heme under oxidative stress conditions, leading to a free iron ion. The liberated iron is subsequently coordinated on the protein surface. Furthermore, HbpS has been shown to modulate the phosphorylation state of the sensor kinase SenS as, in the absence of oxidative stress conditions, HbpS inhibits SenS autophosphorylation whereas the presence of heme or iron ions and redox-stressing agents enhances it. Using HbpS wild type and mutants as well as different biochemical and biophysical approaches, we show that iron-mediated oxidative stress induces both secondary structure and overall intrinsic conformational changes within HbpS. We demonstrate in addition that HbpS is oxidatively modified, leading to the generation of highly reactive carbonyl groups and tyrosine-tyrosine bonds. Further examination of the crystal structure and subsequent mutational analyses allowed the identification of the tyrosine residue participating in dityrosine formation, which occurs between two monomers within the octomeric assembly. Therefore, it is proposed that oxidative modifications causing structural and conformational changes are responsible for the control of SenS and hence of the HbpS-SenS-SenR signaling cascade.
机译:HbpS是一种细胞外寡聚蛋白,已显示出在氧化还原应力感测中与两组分系统SenS-SenR协同作用。 HbpS可以在氧化应激条件下结合并降解血红素,从而导致游离铁离子。释放的铁随后在蛋白质表面上配位。此外,已显示HbpS调节传感器激酶SenS的磷酸化状态,因为在没有氧化应激条件下,HbpS抑制SenS自磷酸化,而血红素或铁离子和氧化还原应激剂的存在会增强它。使用HbpS野生型和突变体以及不同的生化和生物物理方法,我们表明铁介导的氧化应激诱导HbpS内的二级结构和整体固有构象变化。我们还证明了HbpS被氧化修饰,导致高反应性羰基和酪氨酸-酪氨酸键的产生。进一步检查晶体结构和随后的突变分析,可以鉴定参与二氢酪氨酸形成的酪氨酸残基,该酪氨酸残基发生在八聚体组装物中的两个单体之间。因此,提出引起结构和构象变化的氧化修饰负责SenS的控制,并因此控制HbpS-SenS-SenR信号级联。

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