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合成抗菌肽Nkl和Dic具有免疫调节作用,但只有Dic肽对诺达病毒感染具有治疗作用。

Synthetic antimicrobial Nkl and Dic peptides are immunomodulatory but only Dic peptide can be therapeutic against nodavirus infection.

作者信息

Cervera Laura, Arizcun Marta, Mercado Luis, Chaves-Pozo Elena, Cuesta Alberto

机构信息

Immunobiology for Aquaculture Group, Department of Cell Biology and Histology, Faculty of Biology, University of Murcia, 30100, Murcia, Spain; Centro Oceanográfico de Murcia, Instituto Español de Oceanografía (COMU-IEO), CSIC, Carretera de la Azohía s/n, Puerto de Mazarrón, 30860, Murcia, Spain.

Centro Oceanográfico de Murcia, Instituto Español de Oceanografía (COMU-IEO), CSIC, Carretera de la Azohía s/n, Puerto de Mazarrón, 30860, Murcia, Spain.

出版信息

Fish Shellfish Immunol. 2024 Sep;152:109772. doi: 10.1016/j.fsi.2024.109772. Epub 2024 Jul 15.

Abstract

Aquaculture is a prosperous economic sector threatened by viral infections. Among the viruses threatening fish culture, Betanodavirus (NNV) is extremely important in the Mediterranean Sea affecting to highly traded species as European sea bass. In this context, application of antimicrobial peptides (AMPs) has arisen as a potential biotechnological tool. The aim of this work was to evaluate the therapeutic application of two European sea bass-derived AMPs, NK-lysin (Nkl) and dicentracin (Dic), against NNV infections. Synthetic Dic peptide was able to significantly reduce NNV-induced mortalities while Nkl failed to do so. Although neither Dic nor Nkl peptides were able to alter the transcriptional levels of NNV and the number of infected cells, Nkl seemed to increase the viral load per cell. Interestingly, both Nkl and Dic peptides showed immunomodulatory roles. For instance, our data revealed an interplay among different AMPs, at both gene and protein levels. Otherwise, Nkl and Dic peptides provoked an anti-inflammatory balance upon NNV infection, as well as the recruitment of macrophages and B cells to the target site of the infection, the brain. In conclusion, Dic can be proposed as a therapeutic candidate to combat NNV.

摘要

水产养殖是一个繁荣的经济部门,但受到病毒感染的威胁。在威胁鱼类养殖的病毒中,β-诺达病毒(NNV)在地中海地区极为重要,它会影响如欧洲鲈鱼等高度商业化的物种。在这种背景下,抗菌肽(AMPs)的应用已成为一种潜在的生物技术工具。这项工作的目的是评估两种源自欧洲鲈鱼的抗菌肽NK-溶素(Nkl)和双心菌素(Dic)对NNV感染的治疗应用。合成的Dic肽能够显著降低NNV诱导的死亡率,而Nkl则未能做到这一点。尽管Dic和Nkl肽都不能改变NNV的转录水平和感染细胞的数量,但Nkl似乎会增加每个细胞的病毒载量。有趣的是,Nkl和Dic肽都显示出免疫调节作用。例如,我们的数据揭示了不同抗菌肽在基因和蛋白质水平上的相互作用。此外,Nkl和Dic肽在NNV感染后引发了抗炎平衡,以及巨噬细胞和B细胞向感染的靶位点——大脑的募集。总之,Dic可以被提议作为对抗NNV的治疗候选物。

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