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Composition of the Biofilm Matrix of Cutibacterium acnes Acneic Strain RT5

机译:痤疮皮肤炎痤疮RT5菌株生物膜基质的组成

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摘要

In skin, Cutibacterium acnes (former Propionibacterium acnes) can behave as an opportunistic pathogen, depending on the strain and environmental conditions. Acneic strains of C. acnes form biofilms inside skin–gland hollows, inducing inflammation and skin disorders. The essential exogenous products of C. acnes accumulate in the extracellular matrix of the biofilm, conferring essential bacterial functions to this structure. However, little is known about the actual composition of the biofilm matrix of C. acnes. Here, we developed a new technique for the extraction of the biofilm matrix of Gram-positive bacteria without the use of chemical or enzymatic digestion, known to be a source of artifacts. Our method is based on the physical separation of the cells and matrix of sonicated biofilms by ultracentrifugation through a CsCl gradient. Biofilms were grown on the surface of cellulose acetate filters, and the biomass was collected without contamination by the growth medium. The biofilm matrix of the acneic C. acnes RT5 strain appears to consist mainly of polysaccharides. The following is the ratio of the main matrix components: 62.6% polysaccharides, 9.6% proteins, 4.0% DNA, and 23.8% other compounds (porphyrins precursors and other). The chemical structure of the major polysaccharide was determined using a nuclear magnetic resonance technique, the formula being →6)-α-D-Galp-(1→4)-β-D-ManpNAc3NAcA-(1→6)-α-D-Glcp-(1→4)-β-D-ManpNAc3NAcA-(1→3)-β-GalpNAc-(1→. We detected 447 proteins in the matrix, of which the most abundant were the chaperonin GroL, the elongation factors EF-Tu and EF-G, several enzymes of glycolysis, and proteins of unknown function. The matrix also contained more than 20 hydrolases of various substrata, pathogenicity factors, and many intracellular proteins and enzymes. We also performed surface-enhanced Raman spectroscopy analysis of the C. acnes RT5 matrix for the first time, providing the surface-enhanced Raman scattering (SERS) profiles of the C. acnes RT5 biofilm matrix and biofilm biomass. The difference between the matrix and biofilm biomass spectra showed successful matrix extraction rather than simply the presence of cell debris after sonication. These data show the complexity of the biofilm matrix composition and should be essential for the development of new anti-C. acnes biofilms and potential antibiofilm drugs.
机译:在皮肤中,痤疮杆菌(痤疮丙酸杆菌)可以作为机会病原体,具体取决于菌株和环境条件。痤疮丙酸杆菌的痤疮毒株在皮肤腺体凹陷处形成生物膜,从而引起炎症和皮肤疾病。痤疮丙酸杆菌的主要外源产物积累在生物膜的细胞外基质中,赋予该结构必要的细菌功能。然而,关于痤疮丙酸杆菌的生物膜基质的实际组成知之甚少。在这里,我们开发了一种无需使用化学或酶促消化即可提取革兰氏阳性细菌生物膜基质的新技术,而众所周知,这种化学或酶促消化是人工产物的来源。我们的方法基于通过CsCl梯度超速离心对超声处理的生物膜的细胞和基质进行物理分离。生物膜生长在醋酸纤维素滤膜的表面,收集的生物质不受生长培养基的污染。痤疮痤疮丙酸杆菌RT5菌株的生物膜基质似乎主要由多糖组成。以下是主要基质成分的比率:62.6%的多糖,9.6%的蛋白质,4.0%的DNA和23.8%的其他化合物(卟啉前体等)。使用核磁共振技术确定主要多糖的化学结构,分子式为→6)-α-D-Galp-(1→4)-β-D-ManpNAc3NAcA-(1→6)-α-D -Glcp-(1→4)-β-D-ManpNAc3NAcA-(1→3)-β-GalpNAc-(1→。我们在基质中检测到447种蛋白质,其中最丰富的是伴侣蛋白GroL,延伸因子EF-Tu和EF-G,几种糖酵解酶和功能未知的蛋白质,基质中还包含20多种不同基质的水解酶,致病性因子以及许多细胞内蛋白质和酶,我们还进行了表面增强拉曼光谱分析首次显示痤疮丙酸杆菌RT5基质,提供了痤疮丙酸杆菌RT5生物膜基质和生物膜生物量的表面增强拉曼散射(SERS)曲线,基​​质和生物膜生物量光谱之间的差异表明成功提取了基质,而不是超声处理后细胞碎片的存在,这些数据表明了生物膜的复杂性基质组成,对于开发新型抗C必不可少的。痤疮生物膜和潜在的抗生物膜药物。

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