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甘露糖结合凝集素具有凝集活性,并通过与钙网蛋白相互作用促进早期脊椎动物巨噬细胞的调理吞噬作用。

Mannose-Binding Lectin Possesses Agglutination Activity and Promotes Opsonophagocytosis of Macrophages with Calreticulin Interaction in an Early Vertebrate.

作者信息

Mu Liangliang, Yin Xiaoxue, Wu Hairong, Lei Yang, Han Kailiang, Mo Jinfeng, Guo Zheng, Li Jun, Ye Jianmin

机构信息

Guangdong Provincial Key Laboratory for Healthy and Safe Aquaculture, Institute of Modern Aquaculture Science and Engineering, School of Life Sciences, South China Normal University, Guangdong 510631, People's Republic of China; and.

School of Science and Medicine, Lake Superior State University, Sault Ste. Marie, MI 49783.

出版信息

J Immunol. 2020 Dec 15;205(12):3443-3455. doi: 10.4049/jimmunol.2000256. Epub 2020 Nov 16.

Abstract

The innate immune system is an ancient defense system in the process of biological evolution, which can quickly and efficiently resist pathogen infection. In mammals, mannose-binding lectin (MBL) is a key molecule in the innate immune and plays an essential role in the first line of host defense against pathogenic bacteria. However, the evolutionary origins and ancient roles of immune defense of MBL and its mechanism in clearance of microbial pathogens are still unclear, especially in early vertebrates. In this study, MBL (OnMBL) was successfully isolated and purified from the serum of Nile tilapia (). The OnMBL was able to bind and agglutinate with two important pathogens of tilapia, and Interestingly, the OnMBL was able to significantly inhibit the proliferation of pathogenic bacteria and reduce the inflammatory response. Upon bacterial challenge, the downregulation of expression by RNA interference could lead to rapid proliferation of the pathogenic bacteria, ultimately resulting in tilapia death. However, the phenotype was rescued by reinjection of the OnMBL, which restored the healthy status of the knockdown tilapia. Moreover, a mechanistic analysis revealed that the OnMBL could clear pathogenic bacteria by collaborating with cell-surface calreticulin to facilitate phagocytosis in a complement activation-independent manner. To our knowledge, these results provide the first evidence on the antibacterial response mechanism of MBL performing evolutionary conserved function to promote opsonophagocytosis of macrophages in early vertebrates and reveals new insights into the understanding of the evolutionary origins and ancient roles basis of the C-type lectins in the innate immune defense.

摘要

天然免疫系统是生物进化过程中一种古老的防御系统,能够快速有效地抵抗病原体感染。在哺乳动物中,甘露糖结合凝集素(MBL)是天然免疫中的关键分子,在宿主抵御病原菌的第一道防线中发挥着重要作用。然而,MBL免疫防御的进化起源和古老作用及其清除微生物病原体的机制仍不清楚,尤其是在早期脊椎动物中。在本研究中,成功地从尼罗罗非鱼的血清中分离并纯化出了MBL(OnMBL)。OnMBL能够与罗非鱼的两种重要病原体结合并凝集,有趣的是,OnMBL能够显著抑制病原菌的增殖并减轻炎症反应。在细菌攻击后,通过RNA干扰下调表达会导致病原菌快速增殖,最终导致罗非鱼死亡。然而,通过再次注射OnMBL可以挽救这种表型,恢复敲低罗非鱼的健康状态。此外,机制分析表明,OnMBL可以通过与细胞表面钙网蛋白协作,以不依赖补体激活的方式促进吞噬作用来清除病原菌。据我们所知,这些结果首次提供了关于MBL在早期脊椎动物中执行进化保守功能以促进巨噬细胞调理吞噬作用的抗菌反应机制的证据,并揭示了对理解C型凝集素在天然免疫防御中的进化起源和古老作用基础的新见解。

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