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苔垢酸在促生菌食酸菌全球基因调控中的抗生素和信号分子双重功能。

Dual function of tropodithietic acid as antibiotic and signaling molecule in global gene regulation of the probiotic bacterium Phaeobacter inhibens.

机构信息

Institute for Chemistry and Biology of the Marine Environment (ICBM), University of Oldenburg, 26129, Oldenburg, Germany.

Helmholtz Centre for Infection Research, 38124, Braunschweig, Germany.

出版信息

Sci Rep. 2017 Apr 7;7(1):730. doi: 10.1038/s41598-017-00784-7.

Abstract

Antibiotics are typically regarded as microbial weapons, but whereas their function at concentrations lethal for bacteria is often well characterized, the role of antibiotics at much lower concentrations as possibly found under natural conditions remains poorly understood. By using whole-transcriptome analyses and phenotypic screenings of the marine bacterium Phaeobacter inhibens we found that the broad-spectrum antibiotic tropodithietic acid (TDA) causes the same regulatory effects in quorum sensing (QS) as the common signaling molecule N-acyl-homoserine lactone (AHL) at concentrations 100-fold lower than the minimal inhibitory concentration against bacteria. Our results show that TDA has a significant impact on the expression of ~10% of the total genes of P. inhibens, in the same manner as the AHL. Furthermore, TDA needs the AHL associated LuxR-type transcriptional regulator, just as the AHL molecule. Low concentrations of antibiotics can obviously have a strong influence on the global gene expression of the bacterium that produces it and drastically change the metabolism and behaviour of the bacterium. For P. inhibens this includes motility, biofilm formation and antibiotic production, all important for settlement on new host-associated surfaces. Our results demonstrate that bacteria can produce antibiotics not only to antagonise other bacteria, but also to mediate QS like endogenous AHL molecules.

摘要

抗生素通常被视为微生物武器,但尽管其在对细菌具有致死作用的浓度下的功能通常得到很好的描述,但在自然条件下可能发现的低得多的浓度下,抗生素的作用仍知之甚少。通过使用全转录组分析和海洋细菌 Phaeobacter inhibens 的表型筛选,我们发现广谱抗生素 tropodithietic 酸(TDA)在浓度比最低抑菌浓度低 100 倍的情况下,对群体感应(QS)产生与常见信号分子 N-酰基高丝氨酸内酯(AHL)相同的调节作用。我们的研究结果表明,TDA 对 P. inhibens 约 10%的总基因表达具有显著影响,与 AHL 相同。此外,TDA 需要与 AHL 相关的 LuxR 型转录调节因子,就像 AHL 分子一样。低浓度的抗生素显然可以对产生它的细菌的全局基因表达产生强烈影响,并极大地改变细菌的新陈代谢和行为。对于 P. inhibens 来说,这包括运动性、生物膜形成和抗生素产生,所有这些对在新的宿主相关表面上的定居都很重要。我们的研究结果表明,细菌不仅可以产生抗生素来对抗其他细菌,还可以像内源性 AHL 分子一样介导 QS。

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