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A novel rhamnose-rich hetero-exopolysaccharide isolated from Lactobacillus paracasei DG activates THP-1 human monocytic cells

机译:从副干酪乳杆菌DG分离的新型富含鼠李糖的异胞外多糖激活THp-1人单核细胞

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摘要

Lactobacillus paracasei DG is a bacterial strain with recognized probiotic properties and is used in commercial probiotic products. However, the mechanisms underlying its probiotic properties are mainly unknown. In this study, we tested the hypothesis that the capability of strain DG to interact with the host is, at least partly, associated with its ability to synthesize a surface-associated exopolysaccharide (EPS). Comparative genomics revealed the presence of putative EPS gene clusters in DG genome; accordingly, EPS was isolated from the surface of the bacterium. A sample of the pure EPS from strain DG (DG-EPS), upon NMR and chemical analyses, was shown to be a novel branched hetero-EPS with a repeat unit composed of L-rhamnose, D-galactose, and N-acetyl-D-galactosamine in a ratio of 4:1:1. Subsequently, we demonstrated that the DG-EPS displays immunostimulating properties by enhancing the gene expression of the pro-inflammatory cytokines TNF-α and IL-6, and, particularly, the chemokines IL-8 and CCL20 in the THP-1 human monocytic cell line. In contrast, the expression of the cyclooxygenase enzyme COX-2 was not affected. In conclusion, the DG-EPS is a bacterial macromolecule with the potential ability to boost the immune system as either a secreted molecule released from the bacterium or as a capsular envelope on the bacterial cell wall. This study provides additional information about the mechanisms supporting the cross-talk between L. paracasei DG and the host.
机译:副干酪乳杆菌DG是具有公认的益生菌特性的细菌菌株,用于商业益生菌产品。但是,其益生菌性质的潜在机制主要未知。在这项研究中,我们测试了以下假设:DG菌株与宿主相互作用的能力至少部分与其合成表面相关胞外多糖(EPS)的能力有关。比较基因组学揭示了DG基因组中假定的EPS基因簇的存在。因此,从细菌表面分离出EPS。经NMR和化学分析,来自菌株DG(DG-EPS)的纯EPS样品显示为新型的分支EPS,具有由L-鼠李糖,D-半乳糖和N-乙酰基组成的重复单元。 D-半乳糖胺的比例为4:1:1。随后,我们证明了DG-EPS通过增强促炎细胞因子TNF-α和IL-6,尤其是THP-1人单核细胞中趋化因子IL-8和CCL20的基因表达来显示免疫刺激特性。线。相反,环氧合酶COX-2的表达不受影响。总之,DG-EPS是一种细菌大分子,具有潜在的增强免疫系统能力的能力,可以是从细菌释放的分泌分子,也可以是细菌细胞壁上的荚膜包膜。这项研究提供了有关辅助副干酪乳杆菌DG与宿主之间串扰的机制的其他信息。

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