Department of Marine Life Sciences & Fish Vaccine Research Center, Jeju National University, Jeju Self-Governing Province, 63243, Republic of Korea.
Biotechnology Research Division, National Institute of Fisheries Science, 408-1 Sirang-ri, Gijang-up, Gijang-gun, Busan, 46083, Republic of Korea.
Fish Shellfish Immunol. 2018 Oct;81:1-9. doi: 10.1016/j.fsi.2018.07.006. Epub 2018 Jul 4.
The redlip mullet (Liza haematocheila) is one of the most economically important fish in Korea and other East Asian countries; it is susceptible to infections by pathogens such as Lactococcus garvieae, Argulus spp., Trichodina spp., and Vibrio spp. Learning about the mechanisms of the complement system of the innate immunity of redlip mullet is important for efforts towards eradicating pathogens. Here, we report a comprehensive study of the terminal complement complex (TCC) components that form the membrane attack complex (MAC) through in-silico characterization and comparative spatial and temporal expression profiling. Five conserved domains (TSP1, LDLa, MACPF, CCP, and FIMAC) were detected in the TCC components, but the CCP and FIMAC domains were absent in MuC8β and MuC9. Expression analysis of four TCC genes from healthy redlip mullets showed the highest expression levels in the liver, whereas limited expression was observed in other tissues; immune-induced expression in the head kidney and spleen revealed significant responses against Lactococcus garvieae and poly I:C injection, suggesting their involvement in MAC formation in response to harmful pathogenic infections. Furthermore, the response to poly I:C may suggest the role of TCC components in the breakdown of the membrane of enveloped viruses. These findings may help to elucidate the mechanisms behind the complement system of the teleosts innate immunity.
红鳍东方鲀(Liza haematocheila)是韩国和其他东亚国家最重要的经济鱼类之一;它容易受到鱼类无乳链球菌、锚头鳋、车轮虫和弧菌等病原体的感染。了解红鳍东方鲀先天免疫补体系统的机制对于消除病原体的努力至关重要。在这里,我们通过计算机分析和比较时空表达谱,对形成膜攻击复合物(MAC)的末端补体复合物(TCC)成分进行了全面研究。在 TCC 成分中检测到五个保守结构域(TSP1、LDLa、MACPF、CCP 和 FIMAC),但 MuC8β 和 MuC9 中不存在 CCP 和 FIMAC 结构域。来自健康红鳍东方鲀的四个 TCC 基因的表达分析显示,肝脏中的表达水平最高,而在其他组织中表达有限;对头肾和脾脏的免疫诱导表达表明,它们对鱼类无乳链球菌和聚肌胞苷酸注射有显著反应,表明它们参与了针对有害病原感染的 MAC 形成。此外,对聚肌胞苷酸的反应可能表明 TCC 成分在破坏包膜病毒的膜方面的作用。这些发现可能有助于阐明硬骨鱼先天免疫补体系统的机制。