CSIR-Institute of Microbial Technology, Sector 39A, Chandigarh, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.
PLoS One. 2024 Sep 17;19(9):e0310444. doi: 10.1371/journal.pone.0310444. eCollection 2024.
Quorum sensing plays a vital role in the environmental and host life cycles of Vibrio cholerae. The quorum-sensing circuit involves the consorted action of autoinducers, small RNAs, and regulatory proteins to control a plethora of physiological events in this bacterium. Among the regulatory proteins, LuxO is considered a low-cell-density master regulator. It is a homolog of NtrC, a two-component response regulator. NtrC belongs to an evolving protein family that works with the alternative sigma factor σ54 to trigger gene transcription. Structurally, these proteins comprise 3 domains: a receiver domain, a central AAA+ATPase domain, and a C-terminal DNA-binding domain (DBD). LuxO communicates with its cognate promoters by employing its DNA binding domain. In the present study, we desired to identify the critical residues in the DBD of LuxO. Our combined mutagenesis and biochemical assays resulted in the identification of eleven residues that contribute significantly to LuxO regulatory function.
群体感应在霍乱弧菌的环境和宿主生命周期中起着至关重要的作用。群体感应回路涉及自动诱导物、小 RNA 和调节蛋白的协同作用,以控制该细菌中大量的生理事件。在调节蛋白中,LuxO 被认为是低细胞密度的主调控因子。它是 NtrC 的同源物,NtrC 是一种双组分反应调节剂。NtrC 属于一个不断进化的蛋白质家族,与替代 sigma 因子 σ54 一起触发基因转录。从结构上看,这些蛋白质包含 3 个结构域:一个受体结构域、一个中央 AAA+ATPase 结构域和一个 C 末端 DNA 结合结构域(DBD)。LuxO 通过其 DNA 结合结构域与其同源启动子进行通讯。在本研究中,我们希望确定 LuxO 的 DBD 中的关键残基。我们的组合诱变和生化分析确定了 11 个残基对 LuxO 的调节功能有重要贡献。