Susavion Biosciences, Inc., Tempe, AZ 85281, USA.
Int J Mol Sci. 2020 Jul 8;21(14):4818. doi: 10.3390/ijms21144818.
The large family of C-type lectin (CLEC) receptors comprises carbohydrate-binding proteins that require Ca to bind a ligand. The prototypic receptor is the asialoglycoprotein receptor-1 (ASGR1, CLEC4H1) that is expressed primarily by hepatocytes. The early work on ASGR1, which is highly specific for N-acetylgalactosamine (GalNAc), established the foundation for understanding the overall function of CLEC receptors. Cells of the immune system generally express more than one CLEC receptor that serve diverse functions such as pathogen-recognition, initiation of cellular signaling, cellular adhesion, glycoprotein turnover, inflammation and immune responses. The receptor CLEC10A (C-type lectin domain family 10 member A, CD301; also called the macrophage galactose-type lectin, MGL) contains a carbohydrate-recognition domain (CRD) that is homologous to the CRD of ASGR1, and thus, is also specific for GalNAc. CLEC10A is most highly expressed on immature DCs, monocyte-derived DCs, and alternatively activated macrophages (subtype M2a) as well as oocytes and progenitor cells at several stages of embryonic development. This receptor is involved in initiation of T1, T2, and T17 immune responses and induction of tolerance in naïve T cells. Ligand-mediated endocytosis of CLEC receptors initiates a Ca signal that interestingly has different outcomes depending on ligand properties, concentration, and frequency of administration. This review summarizes studies that have been carried out on these receptors.
C 型凝集素(CLEC)受体大家族包括需要 Ca 结合配体的糖结合蛋白。原型受体是唾液酸化糖蛋白受体-1(ASGR1,CLEC4H1),主要由肝细胞表达。ASGR1 对 N-乙酰半乳糖胺(GalNAc)具有高度特异性,其早期研究为理解 CLEC 受体的整体功能奠定了基础。免疫系统的细胞通常表达一种以上的 CLEC 受体,这些受体具有多种功能,如病原体识别、细胞信号启动、细胞黏附、糖蛋白周转、炎症和免疫反应。受体 CLEC10A(C 型凝集素结构域家族 10 成员 A,CD301;也称为巨噬细胞半乳糖型凝集素,MGL)含有与 ASGR1 的 CRD 同源的碳水化合物识别结构域(CRD),因此也特异性识别 GalNAc。CLEC10A 在未成熟 DC、单核细胞衍生的 DC 和替代激活的巨噬细胞(亚型 M2a)以及卵母细胞和胚胎发育的几个阶段的祖细胞中表达水平最高。该受体参与 T1、T2 和 T17 免疫反应的启动以及幼稚 T 细胞的耐受诱导。CLEC 受体的配体介导的内吞作用会引发 Ca 信号,有趣的是,该信号的结果取决于配体特性、浓度和给药频率。这篇综述总结了对这些受体进行的研究。