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鼠伤寒沙门氏菌 BaeSR 双组份系统的特性及其在环丙沙星诱导 mdtA 表达中的作用。

Characterization of the BaeSR two-component system from Salmonella Typhimurium and its role in ciprofloxacin-induced mdtA expression.

机构信息

Laboratorio de Microbiología Molecular, Departamento de Ciencias Biológicas, Facultad de Ciencias Biológicas, Universidad Andres Bello, República 217, Santiago, Chile.

出版信息

Arch Microbiol. 2012 Jun;194(6):453-60. doi: 10.1007/s00203-011-0779-5. Epub 2011 Dec 16.

Abstract

Two-component systems are one of the most prevalent mechanisms by which bacteria sense, respond and adapt to changes in their environment. The activation of a sensor histidine kinase leads to autophosphorylation of a conserved histidine residue followed by transfer of the phosphoryl group to a cognate response regulator in an aspartate residue. The search for antibiotics that inhibit molecular targets has led to study prokaryotic two-component systems. In this study, we characterized in vitro and in vivo the BaeSR two-component system from Salmonella Typhimurium and evaluated its role in mdtA regulation in response to ciprofloxacin treatment. We demonstrated in vitro that residue histidine 250 is essential for BaeS autophosphorylation and aspartic acid 61 for BaeR transphosphorylation. By real-time PCR, we showed that mdtA activation in the presence of ciprofloxacin depends on both members of this system and that histidine 250 of BaeS and aspartic acid 61 of BaeR are needed for this. Moreover, the mdtA expression is directly regulated by binding of BaeR at the promoter region, and this interaction is enhanced when the protein is phosphorylated. In agreement, a BaeR mutant unable to phosphorylate at aspartic acid 61 presents a lower affinity with the mdtA promoter.

摘要

双组分系统是细菌感知、响应和适应环境变化的最普遍机制之一。传感器组氨酸激酶的激活导致保守的组氨酸残基的自磷酸化,然后将磷酸基团转移到天冬氨酸残基中的同源响应调节剂上。寻找抑制分子靶标的抗生素导致了对原核双组分系统的研究。在这项研究中,我们对来自鼠伤寒沙门氏菌的 BaeSR 双组分系统进行了体外和体内表征,并评估了其在环丙沙星处理时对 mdtA 调节的作用。我们在体外证明残基组氨酸 250 对于 BaeS 自磷酸化和天冬氨酸 61 对于 BaeR 反式磷酸化是必需的。通过实时 PCR,我们表明在环丙沙星存在下 mdtA 的激活依赖于该系统的两个成员,并且 BaeS 的组氨酸 250 和 BaeR 的天冬氨酸 61 对此是必需的。此外,BaeR 在启动子区域的结合直接调控 mdtA 的表达,并且当蛋白质被磷酸化时,这种相互作用增强。一致地,不能在天冬氨酸 61 处磷酸化的 BaeR 突变体与 mdtA 启动子的亲和力较低。

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