Lectins play a critical role in host protection against infection. The galectin family of lectins recognizes saccharide ligands on a variety of microbial pathogens, including viruses, bacteria, and parasites. Galectin-3, a galectin expressed by macrophages, dendritic cells, and epithelial cells, binds bacterial and parasitic pathogens including Leishmania major, Trypanosoma cruzi, and Neisseria gonorrhoeae. However, there have been no reports of galectins having direct effects on microbial viability. We found that galectin-3 bound only to Candida albicans species that bear beta-1,2-linked oligomannans on the cell surface, but did not bind Saccharomyces cerevisiae that lacks beta-1,2-linked oligomannans. Surprisingly, binding directly induced death of Candida species containing specific beta-1,2-linked oligomannosides. Thus, galectin-3 can act as a pattern recognition receptor that recognizes a unique pathogen-specific oligosaccharide sequence. This is the first description of antimicrobial activity for a member of the galectin family of mammalian lectins; unlike other lectins of the innate immune system that promote opsonization and phagocytosis, galectin-3 has direct fungicidal activity against opportunistic fungal pathogens.

译文

:凝集素在宿主预防感染中起着至关重要的作用。凝集素的半乳凝素家族可识别多种微生物病原体(包括病毒,细菌和寄生虫)上的糖配体。 Galectin-3是一种由巨噬细胞,树突状细胞和上皮细胞表达的半乳糖凝集素,结合细菌和寄生性病原体,包括大利什曼原虫,克氏锥虫和淋病奈瑟氏球菌。但是,尚未有关于半乳凝集素对微生物生存能力有直接影响的报道。我们发现,galectin-3仅与在细胞表面带有β-1,2-连接的寡甘露聚糖的白色念珠菌结合,但不与缺乏β-1,2-连接的寡甘露聚糖的酿酒酵母结合。出人意料的是,结合直接导致含有特定的β-1,2-连接的寡甘露糖苷的念珠菌死亡。因此,galectin-3可用作识别独特病原体特异性寡糖序列的模式识别受体。这是对哺乳动物凝集素半乳凝素家族成员的抗菌活性的首次描述;与先天免疫系统中促进调理作用和吞噬作用的其他凝集素不同,galectin-3具有直接针对机会性真菌病原体的杀真菌活性。

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