Analysis of tissue tropism of GCRV-II infection in grass carp using a VP35 monoclonal antibody

IF 2.7 3区 农林科学 Q1 FISHERIES
Yanan Lu , Weihua Zhao , Ning Ji , Dan Xu , Yaoguo Li , Tiaoyi Xiao , Junya Wang , Jun Zou
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引用次数: 0

Abstract

Grass carp, one of the major freshwater aquaculture species in China, is susceptible to grass carp reovirus (GCRV). GCRV is a non-enveloped RNA virus and has a double-layered capsid, causing hemorrhagic disease and high mortalities in infected fish. However, the tropism of GCRV infection has not been investigated. In this study, monoclonal antibodies against recombinant VP35 protein were generated in mice and characterized. The antibodies exhibited specific binding to the N terminal region (1–155 aa) of the recombinant VP35 protein expressed in the HEK293 cells, and native VP35 protein in the GCRV-II infected CIK cells. Immunofluorescent staining revealed that viruses aggregated in the cytoplasm of infected cells. In vivo challenge experiments showed that high levels of GCRV-II viruses were present in the gills, intestine, spleen and liver, indicating that they are the major sites for virus infection. Our study showed that the VP35 antibodies generated in this study exhibited high specificity, and are valuable for the development of diagnostic tools for GCRV-II infection.

利用 VP35 单克隆抗体分析草鱼 GCRV-II 感染的组织滋养特性
草鱼是中国主要的淡水养殖品种之一,容易感染草鱼再病毒(GCRV)。GCRV 是一种非显性 RNA 病毒,具有双层荚膜,感染后会导致鱼类出血性疾病和高死亡率。然而,GCRV 感染的趋向性尚未得到研究。本研究在小鼠体内产生了针对重组 VP35 蛋白的单克隆抗体,并对其进行了鉴定。这些抗体与 HEK293 细胞中表达的重组 VP35 蛋白的 N 端区域(1-155 aa)和感染 GCRV-II 的 CIK 细胞中的原生 VP35 蛋白有特异性结合。免疫荧光染色显示病毒聚集在感染细胞的细胞质中。体内挑战实验表明,鳃、肠道、脾脏和肝脏中存在大量 GCRV-II 病毒,表明它们是病毒感染的主要部位。我们的研究表明,本研究产生的 VP35 抗体具有高度特异性,对开发 GCRV-II 感染的诊断工具很有价值。
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来源期刊
CiteScore
6.20
自引率
6.90%
发文量
206
审稿时长
49 days
期刊介绍: Developmental and Comparative Immunology (DCI) is an international journal that publishes articles describing original research in all areas of immunology, including comparative aspects of immunity and the evolution and development of the immune system. Manuscripts describing studies of immune systems in both vertebrates and invertebrates are welcome. All levels of immunological investigations are appropriate: organismal, cellular, biochemical and molecular genetics, extending to such fields as aging of the immune system, interaction between the immune and neuroendocrine system and intestinal immunity.
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