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African swine fever, caused by a large icosahedral DNA virus (African swine fever virus, ASFV), is a highly contagious disease in domestic and feral swine, thus posing a significant economic threat to the global swine industry. Currently, there are no effective vaccines or the available methods to control ASFV infection. Attenuated live viruses with deleted virulence factors are considered to be the most promising vaccine candidates; however, the mechanism by which these attenuated viruses confer protection is unclear. Here, we used the Chinese ASFV CN/GS/2018 as a backbone and used homologous recombination to generate a virus in which MGF110-9L and MGF360-9L, two genes antagonize host innate antiviral immune response, were deleted (ASFV-ΔMGF110/360-9L). This genetically modified virus was highly attenuated in pigs and provided effective protection of pigs against parental ASFV challenge. Importantly, we found ASFV-ΔMGF110/360-9L infection induced higher expression of Toll-like receptor 2 (TLR2) mRNA compared with parental ASFV as determined by RNA-Seq and RT-PCR analysis. Further immunoblotting results showed that parental ASFV and ASFV-ΔMGF110/360-9L infection inhibited Pam3CSK4-triggered activating phosphorylation of proinflammatory transcription factor NF-κB subunit p65 and phosphorylation of NF-κB inhibitor IκBα levels, although NF-κB activation was higher in ASFV-ΔMGF110/360-9L-infected cells compared with parental ASFV-infected cells. Additionally, we show overexpression of TLR2 inhibited ASFV replication and the expression of ASFV p72 protein, whereas knockdown of TLR2 had the opposite effect. Our findings suggest that the attenuated virulence of ASFV-ΔMGF110/360-9L might be mediated by increased NF-κB and TLR2 signaling.
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http://dx.doi.org/10.1016/j.jbc.2023.104767 | DOI Listing |
Int J Biol Macromol
September 2025
College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu Province, China; Joint International Research Laboratory of Agriculture and Agri-Product Safety, the Ministry of Education of China, Yangzhou University, Yangzhou, Jiangsu Province, China; Jiangsu Co-Innovation Center for Prevent
African swine fever virus (ASFV) encodes multiple proteins to achieve immune escape, thereby disrupting the host's antiviral defense. This study demonstrates that the ASFV-encoded pE248R protein disrupted the Retinoic Acid-Inducible Gene I (RIG-I) mediated antiviral signaling cascade through dual regulatory mechanisms. Mechanistically, pE248R interacted with the caspase activation and recruitment domains (CARD) of RIG-I, effectively blocking its interaction with the mitochondrial adaptor MAVS.
View Article and Find Full Text PDFAfrican swine fever virus (ASFV) is an important transboundary animal pathogen with significant impacts on the global swine industry. Overwhelming proinflammatory responses are a major virulence mechanism for ASFV, but the dynamics of these changes during clinical disease are not completely understood. We constructed a detailed portrait of the innate immune responses during acute African swine fever (ASF) at the cellular, transcriptomic, and cytokine levels.
View Article and Find Full Text PDFTransbound Emerg Dis
September 2025
Department of Animal Biosciences, Swedish University of Agricultural Sciences, Uppsala, Sweden.
In September 2023, Sweden experienced its first ever outbreak of African swine fever (ASF). One year later, in September 2024, Sweden was declared free from ASF. One of the first actions taken toward control and eradication was an intensive search for wild boar carcasses.
View Article and Find Full Text PDFTransbound Emerg Dis
September 2025
OR Tambo Africa Research Chair for Viral Epidemics, SACIDS Foundation for One Health, Sokoine University of Agriculture, Morogoro, Tanzania.
African swine fever (ASF) is a hemorrhagic disease of domestic pigs and wild boars. The ASF virus (ASFV), a sole member of the family Asfarviridae and genus , causes this devastating disease. In sub-Saharan Africa, ASFV is maintained through three interlinked cycles: the domestic cycle, the pig-tick cycle, and the sylvatic cycle, which collectively sustain its endemic presence in the region.
View Article and Find Full Text PDFMicrob Pathog
September 2025
Laboratory of Pharmacobiology, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China. Electronic address:
Lipid profile of spleen and bursa of Fabricius (BF) during acute infection remains unknown. Acute infection models of porcine reproductive and respiratory syndrome virus (PRRSV), porcine epidemic diarrhea virus (PEDV) and Eimeria tenella (ET) were developed, and spleen samples with African swine fever virus (ASFV) or not were collected. Spleen and BF were examined and characteristic microscopic lesions were observed.
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