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一种由微生物群产生的胆汁盐可诱导. 形成生物膜。

A microbiota-generated bile salt induces biofilm formation in .

机构信息

1Laboratoire Pathogenèse des Bactéries Anaérobies, Institut Pasteur, Université Paris Diderot, Sorbonne Paris Cité, Paris, France.

3Present Address: INRA, UMR UMET, Villeneuve d'Ascq, France.

出版信息

NPJ Biofilms Microbiomes. 2019 May 9;5(1):14. doi: 10.1038/s41522-019-0087-4. eCollection 2019.

Abstract

is a major cause of nosocomial infections. Bacterial persistence in the gut is responsible for infection relapse; sporulation and other unidentified mechanisms contribute to this process. Intestinal bile salts cholate and deoxycholate stimulate spore germination, while deoxycholate kills vegetative cells. Here, we report that sub-lethal concentrations of deoxycholate stimulate biofilm formation, which protects . from antimicrobial compounds. The biofilm matrix is composed of extracellular DNA and proteinaceous factors that promote biofilm stability. Transcriptomic analysis indicates that deoxycholate induces metabolic pathways and cell envelope reorganization, and represses toxin and spore production. In support of the transcriptomic analysis, we show that global metabolic regulators and an uncharacterized lipoprotein contribute to deoxycholate-induced biofilm formation. Finally, enhances biofilm formation of by converting cholate into deoxycholate. Together, our results suggest that deoxycholate is an intestinal signal that induces persistence and may increase the risk of relapse.

摘要

是医院获得性感染的主要原因。肠道内细菌的持续存在是感染复发的原因;而芽孢形成和其他未明机制则有助于这一过程。肠道胆盐胆酸和脱氧胆酸可刺激芽孢发芽,而脱氧胆酸则可杀死营养细胞。在这里,我们报告说,低浓度的脱氧胆酸盐可刺激生物膜的形成,从而保护免受抗菌化合物的侵害。生物膜基质由促进生物膜稳定性的细胞外 DNA 和蛋白质因子组成。转录组分析表明,脱氧胆酸盐可诱导代谢途径和细胞包膜重组,并抑制毒素和孢子的产生。为了支持转录组分析,我们表明,全局代谢调节剂和一种未被表征的脂蛋白有助于脱氧胆酸盐诱导的生物膜形成。最后,通过将胆酸转化为脱氧胆酸,增强了生物膜的形成。总之,我们的研究结果表明,脱氧胆酸盐是一种诱导 持续存在的肠道信号,可能会增加复发的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afeb/6509328/46c1e7ab50e3/41522_2019_87_Fig1_HTML.jpg

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