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鼠树突状细胞与益生菌菌株相互作用的分泌组分析。

Secretome Analysis of Mouse Dendritic Cells Interacting with a Probiotic Strain of .

机构信息

National Research Council, Institute of Food Sciences, CNR-ISA, Via Roma 64, 83100 Avellino, Italy.

Food Microbiology Research Laboratories, R&D Division, Meiji Co., Ltd., Hachiouji, Tokyo 192-0919, Japan.

出版信息

Nutrients. 2020 Feb 20;12(2):555. doi: 10.3390/nu12020555.

Abstract

Probiotics play a key role in the modulation of the gut immune system in health and disease and their action is mediated by molecules exposed on the microorganism surface or secreted probiotic-derived factors. In particular, OLL2809, a probiotic microorganism isolated from human feces, has the potential to modulate various immune responses. The dendritic cells (DCs) are considered the main players in orchestrating the immune response, and their contact with intestinal microbiota is crucial for the development and homeostasis of gut immunity. To gain a perspective on the molecular mechanisms involved in the maturation process of DCs and investigate factors that could modulate these processes, a differential proteomic analysis was performed on the secretome of immature DCs, mature DCs (mDCs, induced by lipopolysaccharide (LPS)), and immature DCs challenged with OLL2809 before treatment with LPS (LGmDCs). The maturation process of DCs was associated to profound changes in the protein secretome and probiotic pre-treatment led to a dramatic modulation of several secreted proteins of mDC, not only classical immune mediators (i.e., cytokines, complement factors, T cell Receptor ligands) but also proteins involved in the contractile and desmosome machineries. The latter data highlight a novel mechanism by which can modulate the maturation process of DCs, reinforcing the concept of a protective anti-inflammatory role ascribed to this probiotic strain.

摘要

益生菌在调节健康和疾病中的肠道免疫系统中发挥着关键作用,其作用是通过暴露在微生物表面或分泌的益生菌衍生因子上的分子来介导的。特别是,从人类粪便中分离出来的益生菌 OLL2809 具有调节各种免疫反应的潜力。树突状细胞(DCs)被认为是协调免疫反应的主要参与者,它们与肠道微生物群的接触对于肠道免疫的发育和稳态至关重要。为了深入了解参与 DC 成熟过程的分子机制,并研究可以调节这些过程的因素,对未成熟 DC、由脂多糖(LPS)诱导的成熟 DC(mDC)和未成熟 DC 与 OLL2809 接触后用 LPS 处理(LGmDCs)的分泌组进行了差异蛋白质组学分析。DC 的成熟过程与蛋白质分泌组的深刻变化相关,益生菌预处理导致 mDC 的几种分泌蛋白的显著调节,不仅是经典的免疫介质(即细胞因子、补体因子、T 细胞受体配体),还有参与收缩和桥粒机制的蛋白质。后一组数据突出了一种可以调节 DC 成熟过程的新机制,这加强了该益生菌株具有保护性抗炎作用的概念。

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