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Interspecies Outer Membrane Vesicles (OMVs) Modulate the Sensitivity of Pathogenic Bacteria and Pathogenic Yeasts to Cationic Peptides and Serum Complement

机译:间隙外膜囊泡(OMV)调节致病细菌和病原酵母对阳离子肽和血清补体的敏感性

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摘要

The virulence of bacterial outer membrane vesicles (OMVs) contributes to innate microbial defense. Limited data report their role in interspecies reactions. There are no data about the relevance of OMVs in bacterial-yeast communication. We hypothesized that model Moraxella catarrhalis OMVs may orchestrate the susceptibility of pathogenic bacteria and yeasts to cationic peptides (polymyxin B) and serum complement. Using growth kinetic curve and time-kill assay we found that OMVs protect Candida albicans against polymyxin B-dependent fungicidal action in combination with fluconazole. We showed that OMVs preserve the virulent filamentous phenotype of yeasts in the presence of both antifungal drugs. We demonstrated that bacteria including Haemophilus influenza, Acinetobacter baumannii, and Pseudomonas aeruginosa coincubated with OMVs are protected against membrane targeting agents. The high susceptibility of OMV-associated bacteria to polymyxin B excluded the direct way of protection, suggesting rather the fusion mechanisms. High-performance liquid chromatography-ultraviolet spectroscopy (HPLC-UV) and zeta-potential measurement revealed a high sequestration capacity (up to 95%) of OMVs against model cationic peptide accompanied by an increase in surface electrical charge. We presented the first experimental evidence that bacterial OMVs by sequestering of cationic peptides may protect pathogenic yeast against combined action of antifungal drugs. Our findings identify OMVs as important inter-kingdom players.
机译:细菌外膜囊泡(OMV)的毒力有助于先天微生物防御。有限的数据报告其在占异度的思想中的作用。没有关于OMV在细菌酵母沟通中的相关性的数据。我们假设模型Moraxella catarrhalis OMV可能会协调致病性细菌和酵母对阳离子肽(多粘蛋白B)和血清补体的敏感性。使用生长动力学曲线和时间杀死测定,我们发现OMVs保护念珠菌蛋白化与氟康唑组合的多粘蛋白B依赖性杀真菌作用。我们展示OMV在两种抗真菌药物存在下保持酵母的毒性丝状表型。我们证明,细菌包括嗜血杆菌流感,肺病菌,铜绿假单胞菌与OMV共键合的铜绿假单胞菌受到防止膜靶向剂。 OMV相关细菌对多粘土B的高敏感性不包括直接保护方式,表明融合机制。高效液相色谱 - 紫外光谱(HPLC-UV)和ζ电位测量揭示了伴随模型阳离子肽的高螯合能力(高达95%)OMV,伴随着表面电荷的增加。我们介绍了第一个实验证据,即通过追杀阳离子肽的细菌OMV可以保护病原酵母免受抗真菌药物的组合作用。我们的调查结果将OMV识别为重要的王国球员。

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