Key Laboratory of Marine Biotechnology in Universities of Shandong, School of Life Sciences, Ludong University, Yantai, 264025, PR China.
Marine Biology Institute of Shandong Province, Qingdao, Shandong, 266002, PR China.
Fish Shellfish Immunol. 2020 Dec;107(Pt A):260-268. doi: 10.1016/j.fsi.2020.10.006. Epub 2020 Oct 5.
In the present study, two C-type lectins (designated as VpClec-3 and VpClec-4) were identified and characterized from the manila clam Venerupis philippinarum. Multiple alignment and phylogenetic relationship analysis strongly suggested that VpClec-3 and VpClec-4 belong to the C-type lectin family. In nonstimulated clams, the VpClec-3 transcript was dominantly expressed in the hepatopancreas, while the VpClec-4 transcript was mainly expressed in gill tissues. Both VpClec-3 and VpClec-4 mRNA expression was significantly upregulated following Vibrio anguillarum challenge. Recombinant VpClec-4 (rVpClec-4) was shown to bind lipopolysaccharide (LPS) and glucan in vitro, whereas recombinant VpClec-3 (rVpClec-3) only bound to glucan. In addition, rVpClec-3 and rVpClec-4 displayed broad agglutination activities towards Vibrio harveyi, Vibrio splendidus and V. anguillarum, while no agglutination activities towards Enterobacter cloacae or Aeromonas hydrophila were observed in rVpClec-3. Moreover, hemocyte phagocytosis was significantly enhanced by rVpClec-3 and rVpClec-4. All the results showed that VpClecs function as pattern recognition receptors (PRRs) with distinct recognition spectra and are potentially involved in the innate immune responses of V. philippinarum.
在本研究中,从菲律宾蛤仔(Venerupis philippinarum)中鉴定并表征了两种 C 型凝集素(分别命名为 VpClec-3 和 VpClec-4)。多重比对和系统发育关系分析强烈表明,VpClec-3 和 VpClec-4 属于 C 型凝集素家族。在未受刺激的蛤中,VpClec-3 转录本主要在肝胰腺中表达,而 VpClec-4 转录本主要在鳃组织中表达。在鳗弧菌(Vibrio anguillarum)攻毒后,VpClec-3 和 VpClec-4 的 mRNA 表达均显著上调。重组 VpClec-4(rVpClec-4)在体外显示出与脂多糖(LPS)和葡聚糖结合的能力,而重组 VpClec-3(rVpClec-3)仅与葡聚糖结合。此外,rVpClec-3 和 rVpClec-4 对哈维弧菌(Vibrio harveyi)、灿烂弧菌(Vibrio splendidus)和鳗弧菌具有广泛的凝集活性,而 rVpClec-3 对阴沟肠杆菌(Enterobacter cloacae)或嗜水气单胞菌(Aeromonas hydrophila)没有凝集活性。此外,rVpClec-3 和 rVpClec-4 显著增强了血细胞的吞噬作用。所有结果表明,VpClecs 作为具有独特识别谱的模式识别受体(PRRs),可能参与了菲律宾蛤仔的先天免疫反应。