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双物种生物膜中竞争物种对细菌铁载体的化学修饰。

Chemical Modification of a Bacterial Siderophore by a Competitor in Dual-Species Biofilms.

机构信息

Department of Chemistry, Ben Gurion University of the Negev, Be'er Sheva, 84105, Israel.

出版信息

Angew Chem Int Ed Engl. 2023 Jul 17;62(29):e202300585. doi: 10.1002/anie.202300585. Epub 2023 Jun 13.

Abstract

Chemical communication between competing bacteria in multi-species environments often enables both species to adapt and survive, and perhaps even thrive. P. aeruginosa and S. aureus are two bacterial pathogens found in natural biofilms, especially in the lungs of cystic fibrosis (CF) patients, where recent studies showed that there is often cooperation between the two species, leading to increased disease severity and antibiotic resistance. However, the mechanisms behind this cooperation are poorly understood. In this study, we analyzed co-cultured biofilms in various settings, and we applied untargeted mass spectrometry-based metabolomics analyses, combined with synthetic validation of candidate compounds. We unexpectedly discovered that S. aureus can convert pyochelin into pyochelin methyl ester, an analogue of pyochelin with reduced affinity for iron (III). This conversion allows S. aureus to coexist more readily with P. aeruginosa and unveils a mechanism underlying the formation of robust dual-species biofilms.

摘要

在多物种环境中,竞争细菌之间的化学通讯通常使两个物种都能够适应和生存,甚至可能茁壮成长。铜绿假单胞菌和金黄色葡萄球菌是两种在天然生物膜中发现的细菌病原体,特别是在囊性纤维化 (CF) 患者的肺部,最近的研究表明,这两种物种之间经常存在合作,导致疾病严重程度和抗生素耐药性增加。然而,这种合作背后的机制还知之甚少。在这项研究中,我们分析了各种环境下的共培养生物膜,并应用了基于非靶向质谱的代谢组学分析,结合了候选化合物的合成验证。我们出人意料地发现,金黄色葡萄球菌可以将焦脱镁叶绿酸转化为焦脱镁叶绿酸甲酯,这是一种焦脱镁叶绿酸的类似物,与铁 (III) 的亲和力降低。这种转化使金黄色葡萄球菌更容易与铜绿假单胞菌共存,并揭示了形成坚固的双物种生物膜的机制。

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