Department of Chemical Sciences and Task Force for Microbiome Studies, University of Naples Federico II, Via Cinthia 4, 80126 Naples, Italy.
Amsterdam UMC, Vrije Universiteit Amsterdam, Department of Molecular Cell Biology and Immunology, Amsterdam Infection and Immunity Institute, Amsterdam, the Netherlands.
Carbohydr Polym. 2025 Jan 15;348(Pt A):122833. doi: 10.1016/j.carbpol.2024.122833. Epub 2024 Oct 5.
Lipopolysaccharides (LPS) decorating the cell surface of Gram-negative bacteria exhibit nuanced functionalities linked to their precise structural composition. However, despite their critical role in health and disease, information on the structure and function of LPS from members of the human gut microbiota is still limited. Here, we deciphered the complete structure of the LPS isolated from the human gut bacterium Bacteroides eggerthii 1_2_48FAA. We showed that B. eggerthii 1_2_48FAA produces an R-type LPS (or lipooligosaccharide, LOS) composed of a heterogeneous mixture of tetra- and penta-acylated lipid A species with different degree of phosphorylation, and a compact galactofuranose-containing core oligosaccharide. Using in vitro human cell lines, we showed that B. eggerthii 1_2_48FAA LOS acts as a weak activator of TLR4-mediated signaling. Moreover, we observed that expression of maturation markers CD40, CD80 and CD86 on monocytes-derived dendritic cells upon B. eggerthii 1_2_48FAA LOS exposure was significantly lower compared to pro-inflammatory Escherichia coli LPS. Taken together, these data provide new structural and biological insights into LPS from gut bacteria, underscoring the importance of structural features in modulating host immunity.
脂多糖(LPS)装饰革兰氏阴性细菌的细胞表面,具有与其精确结构组成相关的细微功能。然而,尽管它们在健康和疾病中具有关键作用,但关于人类肠道微生物群成员的 LPS 的结构和功能的信息仍然有限。在这里,我们破译了从人类肠道细菌拟杆菌属 1_2_48FAA 中分离出的 LPS 的完整结构。我们表明,B. eggerthii 1_2_48FAA 产生一种 R 型 LPS(或脂寡糖,LOS),由具有不同磷酸化程度的四酰基和五酰基脂质 A 物种的不均匀混合物组成,以及一个紧凑的含有半乳糖呋喃糖的核心寡糖。使用体外人细胞系,我们表明 B. eggerthii 1_2_48FAA LOS 作为 TLR4 介导的信号的弱激活剂起作用。此外,我们观察到在 B. eggerthii 1_2_48FAA LOS 暴露下,单核细胞来源的树突状细胞上的成熟标志物 CD40、CD80 和 CD86 的表达明显低于促炎大肠杆菌 LPS。总之,这些数据为肠道细菌的 LPS 提供了新的结构和生物学见解,强调了结构特征在调节宿主免疫中的重要性。