The 2-aminoadipic acid (2-AAA) regulates grass carp ULK2 to inhibit GCRV replication

IF 4.1 2区 农林科学 Q1 FISHERIES
Xinyu Liang , Xuyang Wang , Xiaowen Zou , Qian Wang , Hanyue Wang , Cheng Yang , Yongming Li , Lanjie Liao , Zuoyan Zhu , Yaping Wang , Libo He
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引用次数: 0

Abstract

Grass carp is an important commercial fish in China that is plagued by various diseases, especially the hemorrhagic disease induced by grass carp reovirus (GCRV). Autophagy, a highly conserved biological process among eukaryotes, is pivotal in maintaining cellular homeostasis and managing various stressors, including viral infections. Uncoordinated (Unc) 51-like kinase 2 (ULK2) is considered an initiator of the autophagic process. In this study, we successfully cloned and isolated the ULK2 gene from grass carp. We observed that its expression levels were markedly altered following exposure to GCRV or pathogen-associated molecular patterns (PAMPs). Overexpression of CiULK2 in grass carp ovary cells (GCO) promoted GCRV replication. Conversely, CiULK2 knockdown resulted in inhibited viral loads compared to the control group. Moreover, we also reveal that 2-aminoadipic acid (2-AAA), a representative autophagy related metabolite, can inhibit autophagy and viral replication. Notably, these roles of CiULK2 in autophagy and GCRV replication were reversed upon treatment with the 2-AAA. Collectively, our findings demonstrate the 2-AAA regulates CiULK2 to inhibit GCRV replication.
2-氨基己二酸(2-AAA)通过调节草鱼ULK2抑制GCRV复制。
草鱼是中国重要的商品鱼类,受到各种疾病的困扰,特别是由草鱼呼肠孤病毒(GCRV)引起的出血性疾病。自噬是真核生物中高度保守的生物过程,在维持细胞稳态和管理包括病毒感染在内的各种应激源中起着关键作用。Unc 51样激酶2 (ULK2)被认为是自噬过程的启动剂。本研究成功克隆并分离了草鱼ULK2基因。我们观察到其表达水平在暴露于GCRV或病原体相关分子模式(PAMPs)后显着改变。CiULK2在草鱼卵巢细胞(GCO)中的过表达促进了GCRV的复制。相反,与对照组相比,CiULK2敲低导致病毒载量受到抑制。此外,我们还发现自噬相关代谢物2-氨基己二酸(2-AAA)可以抑制自噬和病毒复制。值得注意的是,CiULK2在自噬和GCRV复制中的这些作用在用2-AAA治疗后被逆转。总之,我们的研究结果表明,2-AAA调节CiULK2抑制GCRV的复制。
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来源期刊
Fish & shellfish immunology
Fish & shellfish immunology 农林科学-海洋与淡水生物学
CiteScore
7.50
自引率
19.10%
发文量
750
审稿时长
68 days
期刊介绍: Fish and Shellfish Immunology rapidly publishes high-quality, peer-refereed contributions in the expanding fields of fish and shellfish immunology. It presents studies on the basic mechanisms of both the specific and non-specific defense systems, the cells, tissues, and humoral factors involved, their dependence on environmental and intrinsic factors, response to pathogens, response to vaccination, and applied studies on the development of specific vaccines for use in the aquaculture industry.
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