The E301R protein of African swine fever virus functions as a sliding clamp involved in viral genome replication

Sliding clamp is a highly conserved protein in the evolution of prokaryotic and eukaryotic cells. The sliding clamp is required for genomic replication as a critical co-factor of DNA polymerases. However, the sliding clamp analogs in viruses remain largely unknown. We found that the ASFV E301R prote...

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Veröffentlicht in:mBio 2023-10, Vol.14 (5), p.e0164523-e0164523
Hauptverfasser: Li, Su, Ge, Hailiang, Li, Yanhua, Zhang, Kehui, Yu, Shaoxiong, Cao, Hongwei, Wang, Yanjin, Deng, Hao, Li, Jiaqi, Dai, Jingwen, Li, Lian-Feng, Luo, Yuzi, Sun, Yuan, Geng, Zhi, Dong, Yuhui, Zhang, Heng, Qiu, Hua-Ji
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Sprache:eng
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Zusammenfassung:Sliding clamp is a highly conserved protein in the evolution of prokaryotic and eukaryotic cells. The sliding clamp is required for genomic replication as a critical co-factor of DNA polymerases. However, the sliding clamp analogs in viruses remain largely unknown. We found that the ASFV E301R protein (pE301R) exhibited a sliding clamp-like structure and similar functions during ASFV replication. Interestingly, pE301R is assembled into a unique ring-shaped homotetramer distinct from sliding clamps or proliferating cell nuclear antigens (PCNAs) from other species. Notably, the gene is required for viral life cycle, but the pE301R function can be partially restored by the porcine PCNA. This study not only highlights the functional role of the ASFV pE301R as a viral sliding clamp analog, but also facilitates the dissection of the complex replication mechanism of ASFV, which provides novel clues for developing antivirals against ASF.
ISSN:2150-7511
2150-7511
DOI:10.1128/mbio.01645-23