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Using Recombinant Lactococci as an Approach to Dissect the Immunomodulating Capacity of Surface Piliation in Probiotic Lactobacillus rhamnosus GG

机译:使用重组乳球菌作为方法剖析益生菌鼠李糖杆菌GG中表面纤毛的免疫调节能力

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摘要

Primarily arising from their well understood beneficial health effects, many lactobacilli strains are considered good candidates for use as probiotics in humans and animals. Lactobacillar probiosis can itself be best typified by the Lactobacillus rhamnosus GG strain, which, with its well-documented clinical benefits, has emerged as one of the most widely used probiotics in the food and health-supplement industries. Even so, many facets of its molecular mechanisms and limitations as a beneficial commensal bacterium still remain to be thoroughly explored and dissected. Because L. rhamnosus GG is one of only a few such strains exhibiting surface piliation (called SpaCBA), we sought to examine whether this particular type of cell-surface appendage has a discernible immunomodulating capacity and is able to trigger targeted responses in human immune-related cells. Thus, presented herein for this study, we recombinantly engineered Lactococcus lactis to produce native (and pilin-deleted) SpaCBA pili that were assembled in a structurally authentic form and anchored to the cell surface, and which had retained mucus-binding functionality. By using these recombinant lactococcal constructs, we were able to demonstrate that the SpaCBA pilus can be a contributory factor in the activation of Toll-like receptor 2-dependent signaling in HEK cells as well as in the modulation of pro- and anti-inflammatory cytokine (TNF-α, IL-6, IL-10, and IL-12) production in human monocyte-derived dendritic cells. From these data, we suggest that the recombinant-expressed and surface-anchored SpaCBA pilus, given its projected functioning in the gut environment, might be viewed as a new microbe-associated molecular pattern (MAMP)-like modulator of innate immunity. Accordingly, our study has brought some new insight to the molecular immunogenicity of the SpaCBA pilus, thus opening the way to a better understanding of its possible role in the multifaceted nature of L. rhamnosus GG probiosis within the human gut.
机译:主要由于其广为人知的有益健康作用,许多乳杆菌菌株被认为是人和动物中用作益生菌的良好候选者。鼠李糖乳杆菌GG菌株可以很好地代表乳杆菌的益生菌,该菌株具有良好的临床疗效,已成为食品和保健食品行业中使用最广泛的益生菌之一。即便如此,作为有益的共生细菌,其分子机制和局限性的许多方面仍有待深入研究和剖析。由于鼠李糖乳杆菌GG是仅有的少数几种表现出表面毛发的菌株之一(称为SpaCBA),因此我们试图研究这种特殊类型的细胞表面附肢是否具有可识别的免疫调节能力,并能够在人免疫系统中触发针对性应答。相关细胞。因此,在本研究中,我们对乳酸乳球菌进行了重组工程改造,以生产天然的(和菌毛缺失的)SpaCBA菌毛,其菌丝以结构可靠的形式组装并锚定在细胞表面,并保留了黏液结合功能。通过使用这些重组乳球菌构建体,我们能够证明SpaCBA菌毛可能是激活HEK细胞中Toll样受体2依赖性信号转导以及调节促炎和消炎细胞因子的重要因素。人单核细胞衍生的树突状细胞中产生(TNF-α,IL-6,IL-10和IL-12)。从这些数据,我们建议,重组表达和表面锚定的SpaCBA菌毛,鉴于其在肠道环境中的预计功能,可能被视为一种与生俱来的免疫力相关的新型微生物相关分子模式(MAMP)调节剂。因此,我们的研究为SpaCBA菌毛的分子免疫原性带来了一些新见解,从而为更好地了解其在人肠内鼠李糖乳杆菌GG益生菌的多面性中的作用开辟了道路。

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