Laboratory of Aquatic Comparative Immunology, School of Life Sciences, East China Normal University, Shanghai, 200241, China; Shandong Marine Resource and Environment Research Institute, Yantai 264006, China.
Shandong Marine Resource and Environment Research Institute, Yantai 264006, China.
Fish Shellfish Immunol. 2018 Jan;72:477-483. doi: 10.1016/j.fsi.2017.11.026. Epub 2017 Nov 14.
Sialic acid-binding lectins (SABLs) are ubiquitous ancient molecules with binding properties to N-acetyl or N-glycolyl carbohydrates, and play crucial roles in both adaptive and innate immune responses. In present study, recombinant protein and antibodies of two SABLs from mollusk Solen grandis (SgSABL-1 and SgSABL-2) were prepared to investigate their functions in innate immunity. The recombinant protein of SgSABL-1 (rSgSABL-1) could bind LPS, PGN and β-glucan in vitro, while rSgSABL-2 could only bind PGN rather than LPS and β-glucan. Be coincident with their PAMPs recognition properties, rSgSABL-1 displayed a broad agglutination spectrum towards gram-positive bacteria Micrococcus luteus, gram-negative bacteria Listonella anguillarum and fungi Pichia pastoris, and rSgSABL-2 only showed remarkable agglutinative effect on M. luteus and L. anguillarum. More importantly, after PAMPs recognition, rSgSABL-1 and rSgSABL-2 enhanced phagocytosis as well as encapsulation ability of hemocytes in vitro, and the enhanced encapsulation could be blocked by specific antibodies. All these results indicated that SgSABL-1 and SgSABL-2 functioned as two compensative pattern-recognition receptor (PRRs) with distinct recognition spectrum and involved in the innate immune response of S. grandis.
唾液酸结合凝集素(SABLs)是一类具有结合 N-乙酰或 N-糖基化碳水化合物能力的古老分子,在适应性和先天免疫反应中发挥着至关重要的作用。在本研究中,我们制备了来自软体动物长牡蛎(SgSABL-1 和 SgSABL-2)的两种 SABL 的重组蛋白和抗体,以研究它们在先天免疫中的功能。SgSABL-1 的重组蛋白(rSgSABL-1)能够在体外结合 LPS、PGN 和β-葡聚糖,而 rSgSABL-2 只能结合 PGN,而不能结合 LPS 和β-葡聚糖。与它们的 PAMP 识别特性一致,rSgSABL-1 对革兰氏阳性菌微球菌(M. luteus)、革兰氏阴性菌鳗弧菌(L. anguillarum)和真菌毕赤酵母(Pichia pastoris)表现出广泛的凝集谱,而 rSgSABL-2 仅对 M. luteus 和 L. anguillarum 表现出显著的凝集作用。更重要的是,在识别 PAMPs 后,rSgSABL-1 和 rSgSABL-2 增强了体外血淋巴细胞的吞噬作用和包被能力,而这种增强的包被作用可以被特异性抗体阻断。所有这些结果表明,SgSABL-1 和 SgSABL-2 作为两种具有不同识别谱的补偿性模式识别受体(PRRs)发挥作用,参与了长牡蛎的先天免疫反应。