IET Syst Biol. 2013 Oct;7(5):182-7. doi: 10.1049/iet-syb.2012.0059.
Quorum sensing (QS) is a signalling mechanism by which bacteria produce, release and then detect and respond to changes in their density and biosignals called autoinducers (AIs). There are multiple feedback loops in the QS system of Vibrio harveyi. However, how these feedback loops function to control signal processing remains unclear. In this study, the authors present a computational model for the switch-like regulation of signal transduction by small regulatory RNA-mediated QS based on intertwined network involving AIs, LuxO, LuxU, Qrr sRNAs and LuxR. In agreement with experimental observations, the model suggests that different feedbacks play critical roles in the switch-like regulation. The authors results reveal that V. harveyi uses multiple feedbacks to precisely control signal transduction.
群体感应(QS)是一种信号机制,通过这种机制,细菌产生、释放并检测和响应它们的密度和生物信号(称为自诱导物(AIs))的变化。哈维氏弧菌的 QS 系统中有多个反馈回路。然而,这些反馈回路如何控制信号处理尚不清楚。在这项研究中,作者提出了一个基于涉及 AIs、LuxO、LuxU、Qrr sRNAs 和 LuxR 的交织网络的基于小调控 RNA 的 QS 的信号转导开关调节的计算模型。与实验观察结果一致,该模型表明,不同的反馈在开关调节中起着关键作用。作者的研究结果表明,哈维氏弧菌使用多种反馈来精确控制信号转导。