State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences, Wuhan, China.
Section of Transcription & Gene Regulation, The Hormel Institute, University of Minnesota, Austin, MN, USA.
Subcell Biochem. 2024;104:17-31. doi: 10.1007/978-3-031-58843-3_2.
The copper efflux regulator (CueR) is a classical member of the MerR family of metalloregulators and is common in gram-negative bacteria. Through its C-terminal effector-binding domain, CueR senses cytoplasmic copper ions to regulate the transcription of genes contributing to copper homeostasis, an essential process for survival of all cells. In this chapter, we review the regulatory roles of CueR in the model organism Escherichia coli and the mechanisms for CueR in copper binding, DNA recognition, and interplay with RNA polymerase in regulating transcription. In light of biochemical and structural analyses, we provide molecular details for how CueR represses transcription in the absence of copper ions, how copper ions mediate CueR conformational change to form holo CueR, and how CueR bends and twists promoter DNA to activate transcription. We also characterize the functional domains and key residues involved in these processes. Since CueR is a representative member of the MerR family, elucidating its regulatory mechanisms could help to understand the CueR-like regulators in other organisms and facilitate the understanding of other metalloregulators in the same family.
铜输出调节因子(CueR)是 MerR 家族中经典的金属调节因子成员,在革兰氏阴性菌中很常见。通过其 C 端效应物结合结构域,CueR 感知细胞质中的铜离子,从而调节与铜稳态相关的基因转录,这是所有细胞生存的必要过程。在本章中,我们综述了 CueR 在模式生物大肠杆菌中的调控作用,以及 CueR 在铜结合、DNA 识别和与 RNA 聚合酶相互作用以调节转录方面的机制。结合生化和结构分析,我们提供了分子细节,说明 CueR 在没有铜离子的情况下如何抑制转录,铜离子如何介导 CueR 构象变化形成全铜 CueR,以及 CueR 如何弯曲和扭曲启动子 DNA 以激活转录。我们还描述了参与这些过程的功能结构域和关键残基。由于 CueR 是 MerR 家族的代表性成员,阐明其调控机制有助于理解其他生物体中的 CueR 样调控因子,并有助于理解同一家族中的其他金属调控因子。