Nitzan Mor, Fechter Pierre, Peer Asaf, Altuvia Yael, Bronesky Delphine, Vandenesch François, Romby Pascale, Biham Ofer, Margalit Hanah
Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel Department of Microbiology and Molecular Genetics, IMRIC, Faculty of Medicine, The Hebrew University, Jerusalem 91120, Israel.
Architecture et Réactivité de l'ARN, Université de Strasbourg, CNRS, IBMC, Strasbourg F-67084, France.
Nucleic Acids Res. 2015 Feb 18;43(3):1357-69. doi: 10.1093/nar/gkv001. Epub 2015 Jan 27.
Cells adapt to environmental changes by efficiently adjusting gene expression programs. Staphylococcus aureus, an opportunistic pathogenic bacterium, switches between defensive and offensive modes in response to quorum sensing signal. We identified and studied the structural characteristics and dynamic properties of the core regulatory circuit governing this switch by deterministic and stochastic computational methods, as well as experimentally. This module, termed here Double Selector Switch (DSS), comprises the RNA regulator RNAIII and the transcription factor Rot, defining a double-layered switch involving both transcriptional and post-transcriptional regulations. It coordinates the inverse expression of two sets of target genes, immuno-modulators and exotoxins, expressed during the defensive and offensive modes, respectively. Our computational and experimental analyses show that the DSS guarantees fine-tuned coordination of the inverse expression of its two gene sets, tight regulation, and filtering of noisy signals. We also identified variants of this circuit in other bacterial systems, suggesting it is used as a molecular switch in various cellular contexts and offering its use as a template for an effective switching device in synthetic biology studies.
细胞通过有效调整基因表达程序来适应环境变化。金黄色葡萄球菌是一种机会致病菌,它会根据群体感应信号在防御模式和进攻模式之间切换。我们通过确定性和随机计算方法以及实验,鉴定并研究了控制这种切换的核心调控回路的结构特征和动态特性。这个模块,在这里称为双选开关(DSS),由RNA调节因子RNAIII和转录因子Rot组成,定义了一个涉及转录和转录后调控的双层开关。它协调两组靶基因的反向表达,免疫调节剂和外毒素,分别在防御模式和进攻模式下表达。我们的计算和实验分析表明,DSS保证了其两组基因反向表达的微调协调、严格调控以及对噪声信号的过滤。我们还在其他细菌系统中鉴定出了这个回路的变体,表明它在各种细胞环境中被用作分子开关,并为合成生物学研究中的有效开关装置提供了模板。