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Mycobacterium bovis BCG infection alters the macrophage N-glycome

机译:细胞杆菌BOVG感染改变了巨噬细胞N-Glycome

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摘要

Macrophage glycosylation is essential to initiate the host-immune defense but may also be targeted by pathogens to promote infection. Indeed, the alteration of the cell-surface glycosylation status may affect the binding of lectins involved in cell activation and adhesion. Herein, we demonstrate that infection by M. bovis BCG induces the remodeling of the N-glycomes of both human primary blood monocyte-derived macrophages (MDM) and macrophage-cell line THP1. MALDI-MS based N-glycomic analysis established that mycobacterial infection induced increased synthesis of biantennary and multifucosylated complex type N-glycans. In contrast, infection of macrophages by M. bovis BCG did not modify the glycosphingolipids composition of macrophages. Further nano-LC-MSn glycotopecentric analysis of total N-glycans demonstrated that the increased fucosylation was due to an increased expression of the Lex (Galb1-4[Fuca1-3]GlcNAc) epitope, also known as stage-specific embryonic antigen-1. Modification of the surface expression of Lex was further confirmed in both MDM and THP-1 cells by FACS analysis using an a1,3-linked fucose specific lectin. Activation with the mycobacterial lipopeptide Pam3Lp19, an agonist of toll-like receptor 2, did not modify the overall fucosylation pattern, which suggests that the infection process is required to modify surface glycosylation. These results pave the way toward the understanding of infection-triggered cell-surface remodeling of macrophages.
机译:巨噬细胞糖基化对于引发宿主免疫防御至关重要,但也可以通过病原体靶向促进感染。实际上,细胞表面糖基化状态的改变可能影响细胞活化和粘附中所涉及的凝胶的结合。在此,我们证明了M. Bovis BCG的感染诱导人原发性血液单核细胞衍生的巨噬细胞(MDM)和巨噬细胞系THP1的N-甘露糖的重塑。基于Maldi-MS的N-Glycomic分析确定了分枝杆菌感染诱导促进的二聚糖和多岩化复合型N-聚糖的合成。相反,M.Bovis BCG的巨噬细胞感染没有修饰巨噬细胞的巨噬细胞组成。对总N-聚糖的进一步纳米LC-MSN糖戊糖分析证明了增加的岩藻糖基化是由于Lex的表达增加(GALB1-4 [FUCA1-3] GLCNAC)表位,也称为阶段特异性胚胎抗原-1 。通过FACS分析在MDM和THP-1细胞中进一步证实了LEX的表面表达的改性,所述FACS分析使用A1,3-连接的岩藻糖凝集素。用分枝膜脂蛋白脂肽PAM3LP19的激活,Toll样受体2的激动剂,未改变整个岩藻糖基化图案,这表明感染过程需要改变表面糖基化。这些结果铺平了对巨噬细胞感染触发的细胞表面重塑的理解。

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  • 来源
    《Molecular BioSystems》 |2020年第4期|345-354|共10页
  • 作者单位

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Institute of Biological Chemistry Academia Sinica Taiwan Department of Biochemical Sciences and Technology National Taiwan University Taiwan;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Institute of Biological Chemistry Academia Sinica Taiwan;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Institute of Biological Chemistry Academia Sinica Taiwan;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

    Univ. Lille CNRS UMR 8576 UGSF-Unite de Glycobiologie Structurale et Fonctionnelle 59 000 Lille France;

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