首页> 外文期刊>Nucleic Acids Research >Structural basis of thiol-based regulation of formaldehyde detoxification in H. influenzae by a MerR regulator with no sensor region
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Structural basis of thiol-based regulation of formaldehyde detoxification in H. influenzae by a MerR regulator with no sensor region

机译:没有传感器区域的MerR调节剂基于硫醇的流感嗜血杆菌甲醛脱毒调节的结构基础

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Pathogenic bacteria such as Haemophilus influenzae, a major cause of lower respiratory tract diseases, must cope with a range of electrophiles generated in the host or by endogenous metabolism. Formaldehyde is one such compound that can irreversibly damage proteins and DNA through alkylation and cross-linking and interfere with redox homeostasis. Its detoxification operates under the control of HiNmlR, a protein from the MerR family that lacks a specific sensor region and does not bind metal ions. We demonstrate that HiNmlR is a thiol-dependent transcription factor that modulates H. influenzae response to formaldehyde, with two cysteine residues (Cys54 and Cys71) identified to be important for its response against a formaldehyde challenge. We obtained crystal structures of HiNmlR in both the DNA-free and two DNA-bound forms, which suggest that HiNmlR enhances target gene transcription by twisting of operator DNA sequences in a two-gene operon containing overlapping promoters. Our work provides the first structural insights into the mechanism of action of MerR regulators that lack sensor regions.
机译:致病细菌,例如流感嗜血杆菌,是引起下呼吸道疾病的主要原因,必须应对宿主体内或内源性代谢产生的一系列亲电试剂。甲醛就是这样一种化合物,它可以通过烷基化和交联不可逆地破坏蛋白质和DNA,并干扰氧化还原稳态。它的排毒在HiNmlR的控制下进行,HiNmlR是MerR家族的一种蛋白质,缺少特定的传感器区域,并且不结合金属离子。我们证明,HiNmlR是一种硫醇依赖性转录因子,可调节流感嗜血杆菌对甲醛的反应,其中两个半胱氨酸残基(Cys54和Cys71)被确定为其应对甲醛挑战的重要反应。我们获得了无DNA和两种DNA结合形式的HiNmlR的晶体结构,这表明HiNmlR通过扭曲包含重叠启动子的两基因操纵子中的操纵子DNA序列来增强靶基因的转录。我们的工作为缺乏传感器区域的MerR调节器的作用机理提供了第一个结构见解。

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