Chinese Academy of Sciences (CAS) and Shandong Province Key Laboratory of Experimental Marine Biology, Institute of Oceanology; CAS Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao, China.
Laboratory for Marine Biology and Biotechnology, Pilot National Laboratory for Marine Science and Technology, Qingdao, China.
Front Immunol. 2022 Jun 20;13:917697. doi: 10.3389/fimmu.2022.917697. eCollection 2022.
Chemokines are a group of cytokines that play important roles in cell migration, inflammation, and immune defense. In this study, we identified a CXC chemokine, CXCL10, from Japanese flounder (named PoCXCL10) and investigated its immune function. Structurally, PoCXCL10 possesses an N-terminal coil, three β-strands, and a C-terminal α-helix with cationic and amphipathic properties. PoCXCL10 expression occurred in multiple tissues and was upregulated by bacterial pathogens. Recombinant PoCXCL10 (rPoCXCL10) promoted the migration, cytokine expression, and phagocytosis of flounder peripheral blood leukocytes (PBLs). rPoCXCL10 bound to and inhibited the growth of a variety of common Gram-negative and Gram-positive fish pathogens. rPoCXCL10 killed the pathogens by causing bacterial membrane permeabilization and structure destruction. When introduced , rPoCXCL10 significantly inhibited bacterial dissemination in fish tissues. A peptide derived from the C-terminal α-helix exhibited bactericidal activity and competed with rPoCXCL10 for bacterial binding. Deletion of the α-helix affected the bactericidal activity but not the chemotaxis or antimicrobial activity of PoCXCL10. Together, these results indicate that PoCXCL10 exerts the role of both an immunoregulator and a bactericide/bacteriostatic different structural domains. These findings provide new insights into the immune function and working mechanism of fish CXC chemokines.
趋化因子是一类细胞因子,在细胞迁移、炎症和免疫防御中发挥重要作用。在本研究中,我们从牙鲆中鉴定了一种 CXC 趋化因子,命名为 PoCXCL10,并研究了其免疫功能。结构上,PoCXCL10 具有 N 端卷曲、三个β-折叠和 C 端具有正电荷和两亲性的α-螺旋。PoCXCL10 在多种组织中表达,并被细菌病原体上调。重组 PoCXCL10(rPoCXCL10)促进了牙鲆外周血白细胞(PBLs)的迁移、细胞因子表达和吞噬作用。rPoCXCL10 与多种常见的革兰氏阴性和革兰氏阳性鱼类病原体结合并抑制其生长。rPoCXCL10 通过引起细菌膜通透性和结构破坏来杀死病原体。引入 rPoCXCL10 后,可显著抑制细菌在鱼组织中的扩散。来自 C 端α-螺旋的肽具有杀菌活性,并与 rPoCXCL10 竞争细菌结合。删除α-螺旋会影响 PoCXCL10 的杀菌活性,但不影响趋化性或抗菌活性。综上所述,这些结果表明 PoCXCL10 发挥免疫调节剂和杀菌/抑菌剂的双重作用,不同的结构域。这些发现为鱼类 CXC 趋化因子的免疫功能和作用机制提供了新的见解。