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African Swine Fever Virus HLJ/18 CD2v Suppresses Type I IFN Production and IFN-Stimulated Genes Expression through Negatively Regulating cGMP-AMP Synthase-STING and IFN Signaling Pathways

J Immunol. 2023-05; 
Li Huang, Weiye Chen, Hongyang Liu, Mengdi Xue, Siqi Dong, Xiaohong Liu, Chunying Feng, Shinuo Cao, Guangqiang Ye, Qiongqiong Zhou, Zhaoxia Zhang, Jun Zheng, Jiangnan Li, Dongming Zhao, Zilong Wang, Encheng Sun, Hefeng Chen, Shuai Zhang, Xue Wang, Xianfeng Zhang, Xijun He, Yuntao Guan, Zhigao Bu, Changjiang Weng
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Proteins, Expression, Isolation and Analysis … The ASFV EP402R cDNA was synthesized based on the genome of ASFV HLJ/18 isolate and cloned into pCAGGS-Flag vector from GenScript (Nanjing, China). To construct plasmids … Get A Quote

摘要

African swine fever is a fatal infectious disease caused by African swine fever virus (ASFV). The high mortality caused by this infectious disease is a significant challenge to the swine industry worldwide. ASFV virulence is related to its ability to antagonize IFN response, yet the mechanism of antagonism is not understood. Recently, a less virulent recombinant virus has emerged that has a EP402R gene deletion within the parental ASFV HLJ/18 (ASFV-ΔEP402R) strain. EP402R gene encodes CD2v. Hence we hypothesized that ASFV uses CD2v protein to evade type I IFN-mediated innate immune response. We found that ASFV-ΔEP402R infection induced higher type I IFN response and increased the expression of IFN-stimulated ... More

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