Key result
AsfvAP adopts a novel DNA-binding mode with a narrower pocket to adapt to host macrophages.
Why the study?
Although African swine fever virus AP endonuclease (AsfvAP) plays an essential role in viral survival within host cells, the basis underlying its substrate binding and cleavage remained unclear.
May inform ASFV antiviral design; leaves open in vivo validation and clinical translation.
African swine fever virus (ASFV) is highly contagious and can cause lethal disease in pigs. ASFV is primarily replicated in the cytoplasm of pig macrophages, which is oxidative and caused constant damage to ASFV genome. ASFV AP endonuclease (AsfvAP) catalyzes DNA cleavage reaction at the abasic site and is a key enzyme of ASFV base excision repair (BER) system. Although it plays an essential role in ASFV survival in host cells, the basis underlying substrate binding and cleavage by AsfvAP remains unclear. Here, we reported the structural and functional studies of AsfvAP, showing that AsfvAP adopts a novel DNA-binding mode distinct from other APs. AsfvAP possesses many unique structural features, including one narrower nucleotide-binding pocket at the active site, the C16–C20 disulfide bond-containing region, and histidine-rich loop. As indicated by our mutagenesis, in vitro binding and cleavage assays, these features are important for AsfvAP to suit the acidic and oxidative environment. Owing to their functional importance, these unique features could serve as targets for designing small molecule inhibitors that could disrupt the repair process of ASFV genome and help fight against this deadly virus in the future.
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Chen et al. (2020) studied African swine fever virus (ASFV). AsfvAP (African swine fever virus AP endonuclease) vs. Homologous AP endonucleases (e.g., EcNfo) was evaluated on DNA-binding mode and cleavage activity. Structural and functional studies reveal that AsfvAP adopts a novel DNA-binding mode with a narrower nucleotide-binding pocket, adapting the virus to the acidic and oxidative environment of host macrophages.
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