Universidad de Málaga, Instituto de Biotecnología y Desarrollo Azul, IBYDA, Departamento de Microbiología, Facultad de Ciencias, 29071, Málaga, Spain.
Universidad de Málaga, Instituto de Biotecnología y Desarrollo Azul, IBYDA, Departamento de Biología Celular, Genética y Fisiología, Facultad de Ciencias, 29071, Málaga, Spain.
Fish Shellfish Immunol. 2022 Sep;128:612-619. doi: 10.1016/j.fsi.2022.08.048. Epub 2022 Aug 23.
IFN-I generates an antiviral state by inducing the expression of numerous genes, called IFN-stimulated genes, ISGs, including ISG15, which is the only ISG with cytokine-like activity. In a previous study, we developed the Dl_ISG15_E11 cell line, which consisted of E11 cells able to express and secrete sea bass ISG15. The current study is a step forward, analysing the effect of secreted sea bass ISG15 on RGNNV replication in E11 cells, and looking into its immunomodulatory activity in order to corroborate its cytokine-like activity. The medium from ISG15-produccing cells compromised RGNNV replication, as it has been demonstrated both, by reduction in the viral genome synthesis and, specially, in the yield of infective viral particles. The implication of sea bass ISG15 in this protection has been demonstrated by ISG15 removal, which decreased the percentage of surviving cells upon viral infection, and by incubation of RGNNV-infected cells with a recombinant sea bass ISG15 protein, which resulted in almost full protection. Furthermore, the immunomodulatory activity of extracellular sea bass ISG15 has been demonstrated, which reaffirms a cytokine-like role for this protein.
IFN-I 通过诱导大量基因的表达产生抗病毒状态,这些基因被称为 IFN 刺激基因(ISGs),包括 ISG15,它是唯一具有细胞因子样活性的 ISG。在之前的研究中,我们开发了 Dl_ISG15_E11 细胞系,该细胞系由能够表达和分泌鲈鱼 ISG15 的 E11 细胞组成。本研究是向前迈进的一步,分析了分泌的鲈鱼 ISG15 对 E11 细胞中 RGNNV 复制的影响,并研究了其免疫调节活性,以证实其细胞因子样活性。产生 ISG15 的细胞的培养基会影响 RGNNV 的复制,这一点已经通过减少病毒基因组合成,特别是减少感染性病毒颗粒的产量得到了证明。通过去除 ISG15 来证明鲈鱼 ISG15 在这种保护中的作用,这会降低病毒感染后存活细胞的百分比,并且通过用重组鲈鱼 ISG15 蛋白孵育 RGNNV 感染的细胞,几乎可以完全保护细胞。此外,还证明了细胞外鲈鱼 ISG15 的免疫调节活性,这再次证实了该蛋白具有细胞因子样作用。