数字农科院2.0

OASL suppresses infectious bursal disease virus replication by targeting VP2 for degrading through the autophagy pathway

文献类型: 外文期刊

作者: Wang, Suyan;Xu, Zhuangzhuang;Liu, Yongzhen;Yu, Mengmeng;Zhang, Tao;Liu, Peng;Qi, Xiaole;Chen, Yuntong;Meng, Lingzhai;Guo, Ru;Zhang, Li;Fan, Wenrui;Gao, Li;Duan, Yulu;Zhang, Yanping;Cui, Hongyu;Gao, Yulong

作者机构:

关键词: IBDV;OASL;VP2;degradation;autophagy

期刊名称: JOURNAL OF VIROLOGY

ISSN: 0022-538X

年卷期: 2024 年

页码:

收录情况: SCIE(2024版)

摘要: Infectious bursal disease (IBD) is an acute and fatal immunosuppressive disease caused by infectious bursal disease virus (IBDV). As an obligate intracellular parasite, IBDV infection is strictly regulated by host factors. Knowledge on the antiviral activity and possible mechanism of host factors might provide the theoretical basis for the prevention and control of IBD. In this study, RNA-sequencing results indicated that many host factors were induced by IBDV infection, among which the expression levels of OASL (2 ',5 '-oligadenylate synthetase-like protein) was significantly upregulated. OASL overexpression significantly inhibited IBDV replication, whereas OASL knockdown promoted IBDV replication. Interestingly, the antiviral ability of OASL was independent of its canonical enzymatic activity, i.e., OASL targeted viral protein VP2 for degradation, depending on the autophagy receptor p62/SQSTM1 in the autophagy pathway. Additionally, the 316 lysine (K) of VP2 was the key site for autophagy degradation, and its replacement with arginine disrupted VP2 degradation induced by OASL and enhanced IBDV replication. Importantly, our results for the first time indicate a unique and potent defense mechanism of OASL against double-stranded RNA virus by interaction with viral proteins, which leads to their degradation.IMPORTANCE OASL (2 ',5 '-oligadenylate synthetase-like protein) exhibits broad-spectrum antiviral effects against single-stranded RNA viruses in mammals, potentially serving as a promising target for novel antiviral strategies. However, its role in inhibiting the replication of double-stranded RNA viruses (dsRNA viruses), such as infectious bursal disease virus (IBDV), in avian species remains unclear. Our findings indicated a unique and potent defense mechanism of OASL against dsRNA viruses. It has been previously shown in mammals that OASL inhibits virus replication through increasing interferon production. The groundbreaking aspect of our study is the finding that OASL has the ability to interact with IBDV viral protein VP2 and target it for degradation and thus exerts its antiviral effect. Our results reveal the interaction between avian natural antiviral immune response and IBDV infection. Our study not only enhances our understanding of bird defenses against viral infections but can also inform strategies for poultry disease management. OASL (2 ',5 '-oligadenylate synthetase-like protein) exhibits broad-spectrum antiviral effects against single-stranded RNA viruses in mammals, potentially serving as a promising target for novel antiviral strategies. However, its role in inhibiting the replication of double-stranded RNA viruses (dsRNA viruses), such as infectious bursal disease virus (IBDV), in avian species remains unclear. Our findings indicated a unique and potent defense mechanism of OASL against dsRNA viruses. It has been previously shown in mammals that OASL inhibits virus replication through increasing interferon production. The groundbreaking aspect of our study is the finding that OASL has the ability to interact with IBDV viral protein VP2 and target it for degradation and thus exerts its antiviral effect. Our results reveal the interaction between avian natural antiviral immune response and IBDV infection. Our study not only enhances our understanding of bird defenses against viral infections but can also inform strategies for poultry disease management.

分类号:

  • 相关文献

[1]IBDV超强毒HZ株VP2基因的克隆和真核表达质粒的构建. 许信刚,李健强,王笑梅,童光志. 2000

[2]IBDV超强毒HZ株VP2基因的克隆和真核表达质粒的构建. 许信刚,李健强,王笑梅,童光志. 2000

[3]酪蛋白激酶CK1α通过与病毒蛋白VP2互作影响IBDV复制. 陈玉明,张礼洲,王念,卢珍,高立,王永强,高玉龙,高宏雷,刘长军,崔红玉,张艳萍,王笑梅,祁小乐. 2014

[4]The down-regulation of casein kinase 1 alpha as a host defense response against infectious bursal disease virus infection. Zhang, Lizhou,Li, Hui,Chen, Yuming,Gao, Xiang,Lu, Zhen,Gao, Li,Wang, Yongqiang,Gao, Yulong,Gao, Honglei,Liu, Changjun,Cui, Hongyu,Zhang, Yanping,Pan, Qing,Qi, Xiaole,Wang, Xiaomei,Wang, Xiaomei.

[5]Immunogenicity and protection against infectious bursal disease via a transgenic Eimeria acervulina expressing IBDV VP2-2C3d fusion protein. Yingying Sun,Yuehui Liu,Haodi Wang,Qingbin Guo,Jingxia Suo,Sixin Zhang,Xinming Tang,Guangwen Yin,Xun Suo,Xianyong Liu. 2025

[6]A recombinant Marek's disease vaccine candidate provides complete protection against infectious bursal disease virus and H9 subtype avian influenza virus in chickens. Fan, Wenrui,Zeng, Xianying,Chen, Yuntong,Yu, Qingqing,Zhang, Zibo,Tian, Guobin,Liu, Changjun,Bao, Hongmei,Qi, Xiaole,Wu, Longbo,Zhang, Yanping,Liu, Yongzhen,Wang, Suyan,Cui, Hongyu,Duan, Yulu,Chen, Hualan,Gao, Yulong. 2025

[7]Development and Application of Indirect ELISA for IBDV VP2 Antibodies Detection in Poultry. Wenying Zhang,Yulong Wang,Guodong Wang,Hangbo Yu,Mengmeng Huang,Yulong Zhang,Runhang Liu,Suyan Wang,Hongyu Cui,Yanping Zhang,Yuntong Chen,Yulong Gao,Xiaole Qi. 2025

[8]Infectious Bursal Disease Virus Subverts Autophagic Vacuoles To Promote Viral Maturation and Release. Wang, Yongqiang,Duan, Yulu,Han, Chunyan,Yao, Shuai,Qi, Xiaole,Gao, Yulong,Zhang, Lizhou,Gao, Li,Gao, Honglei,Shen, Nan,Wang, Jingfei,Wang, Xiaomei,Maier, Helena J.,Britton, Paul,Chen, Lei.

[9]Foot-And-Mouth Disease Virus Capsid Protein V.p2 Activates The Cellular E if2S1-Atf4 Pathway And Induces Autophagy Via Hspb1. Sun, P,Zhang, SM,Qin, XD,Chang, XN,Cui, XR,Li, HT,Zhang, SJ,Gao, HH,Wang, PH,Zhang, ZD,Luo, JX,Li, ZY. 2018

[10]Piceatannol antagonizes lipolysis by promoting autophagy-lysosome-dependent degradation of lipolytic protein clusters in adipocytes. Jung Yeon Kwon,Jonathan Kershaw,Chih Yu Chen,Susan M. Komanetsky,Yuyan Zhu,Xiaoxuan Guo,Phillip R. Myer,Bruce Applegate,Kee Hong Kim. 2022

[11]Nuclear ribonucleoprotein RALY targets virus nucleocapsid protein and induces autophagy to restrict porcine epidemic diarrhea virus replication. Wenzhen Qin,Ning Kong,Yu Zhang,Sujie Dong,Huanjie Zhai,Xueying Zhai,Xinyu Yang,Chenqian Ye,Manqing Ye,Changlong Liu,Lingxue Yu,Hao Zheng,Hai Yu,Wen Zhang,Guangzhi Tong,Daoliang Lan,Wu Tong,Tongling Shan. 2022

[12]黑麦草-白三叶人工草地退化趋势研究(英文). 张建波,李相林,万里强,陈瑞祥,赵相勇,陈伟,陈国南. 2009

[13]Pseudorabies virus UL24 antagonizes OASL-mediated antiviral effect. Xiaoyong Chen,Ning Kong,Jingjing Xu,Juan Wang,Mingliang Zhang,Keyue Ruan,Liwei Li,Yujiao Zhang,Hao Zheng,Wu Tong,Guoxin Li,Tongling Shan,Guangzhi Tong. 2021

[14]初步构建AIV、NDV、IBDV和IBV同步检测DNA芯片. 王秀荣,石锐,李冬梅,刘丽玲,孙凯,孔宪刚,包红梅,陈化兰. 2005

[15]IBDV反向遗传操作系统的建立和基因功能研究. 祁小乐,高玉龙,高宏雷,邓小芸,步志高,王晓燕,秦立廷,王笑梅. 2007

[16]抗传染性法氏囊病病毒VP5蛋白单克隆抗体的制备与初步应用. 张宁,高宏雷,高玉龙,李俊山,王晓艳,冉多良,王笑梅. 2007

[17]雏鸡混合感染IBDV与CAV的研究. 王笑梅,王秀荣,邱冬,王积海. 2000

[18]IBDV超强毒株Gx基因组大片段在大肠杆菌中的表达. 高宏雷,王笑梅,张厚双,付朝阳,王英,宋素泉. 2003

[19]高尔基体蛋白CSGalNAcT2利于IBDV衣壳蛋白成熟并促进病毒增殖. 张礼洲,高玉龙,任宪刚,陈玉明,王念,卢珍,高立,秦立廷,王永强,高宏雷,李凯,祁小乐,王笑梅. 2014

[20]鸡法氏囊B淋巴细胞全长cDNA表达文库的构建. 张礼洲,祁小乐,高玉龙,王笑梅. 2012

作者其他论文 更多>>