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信息素传感器三巨头的微妙选择性使人肠道共生菌的竞争和捕食失同步。

Subtle selectivity in a pheromone sensor triumvirate desynchronizes competence and predation in a human gut commensal.

机构信息

Biochemistry and Genetics of Microorganisms (BGM), Louvain Institute of Biomolecular Science and Technology, Université catholique de Louvain, Louvain-la-Neuve, Belgium.

Syngulon, Seraing, Belgium.

出版信息

Elife. 2019 Aug 21;8:e47139. doi: 10.7554/eLife.47139.

Abstract

Constantly surrounded by kin or alien organisms in nature, eukaryotes and prokaryotes developed various communication systems to coordinate adaptive multi-entity behavior. In complex and overcrowded environments, they require to discriminate relevant signals in a myriad of pheromones to execute appropriate responses. In the human gut commensal , the cytoplasmic Rgg/RNPP regulator ComR couples competence to bacteriocin-mediated predation. Here, we describe a paralogous sensor duo, ScuR and SarF, which circumvents ComR in order to disconnect these two physiological processes. We highlighted the recurring role of Rgg/RNPP in the production of antimicrobials and designed a robust genetic screen to unveil potent/optimized peptide pheromones. Further mutational and biochemical analyses dissected the modifiable selectivity toward their pheromone and operating sequences at the subtle molecular level. Additionally, our results highlight how we might mobilize antimicrobial molecules while silencing competence in endogenous populations of human microflora and temper gut disorders provoked by bacterial pathogens.

摘要

在自然界中,真核生物和原核生物经常被亲缘或外来生物包围,它们发展出各种通讯系统来协调适应多实体行为。在复杂和拥挤的环境中,它们需要在无数的信息素中辨别相关信号,以做出适当的反应。在人类肠道共生体中,细胞质 Rgg/RNPP 调节剂 ComR 使细菌素介导的捕食与感受态相关联。在这里,我们描述了一个类似的传感器对 ScuR 和 SarF,它们绕过 ComR 以断开这两个生理过程。我们强调了 Rgg/RNPP 在产生抗生素和设计强大的遗传筛选方面的反复作用,以揭示有效的/优化的肽信息素。进一步的突变和生化分析在微妙的分子水平上剖析了它们对信息素和作用序列的可修饰选择性。此外,我们的研究结果还强调了如何在沉默人类微生物群内生种群的感受态的同时调动抗菌分子,并调节由细菌病原体引起的肠道紊乱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/722c/6703854/20f25da01f7f/elife-47139-fig1.jpg

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