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Recent Progress on Gene-deleted Live-attenuated African Swine Fever Virus Vaccines

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Journal NPJ Vaccines
Date 2024 Mar 14
PMID 38480758
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Abstract

African Swine Fever (ASF) is a highly lethal viral disease in swine, with mortality rates approaching 100%. The disease has spread to many swine-producing countries, leading to significant economic losses and adversely impacting global food security. Extensive efforts have been directed toward developing effective ASF vaccines. Among the vaccinology approaches tested to date, live-attenuated virus (LAV) vaccines produced by rational deleting virulence genes from virulent African Swine Fever Virus (ASFV) strains have demonstrated promising safety and efficacy in experimental and field conditions. Many gene-deleted LAV vaccine candidates have been generated in recent years. The virulence genes targeted for deletion from the genome of virulent ASFV strains can be categorized into four groups: Genes implicated in viral genome replication and transcription, genes from the multigene family located at both 5' and 3' termini, genes participating in mediating hemadsorption and putative cellular attachment factors, and novel genes with no known functions. Some promising LAV vaccine candidates are generated by deleting a single viral virulence gene, whereas others are generated by simultaneously deleting multiple genes. This article summarizes the recent progress in developing and characterizing gene-deleted LAV vaccine candidates.

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References
1.
OLIVEROS M, Garcia-Escudero R, Alejo A, Vinuela E, Salas M, Salas J . African swine fever virus dUTPase is a highly specific enzyme required for efficient replication in swine macrophages. J Virol. 1999; 73(11):8934-43. PMC: 112924. DOI: 10.1128/JVI.73.11.8934-8943.1999. View

2.
Reis A, Goatley L, Jabbar T, Sanchez-Cordon P, Netherton C, Chapman D . Deletion of the African Swine Fever Virus Gene DP148R Does Not Reduce Virus Replication in Culture but Reduces Virus Virulence in Pigs and Induces High Levels of Protection against Challenge. J Virol. 2017; 91(24). PMC: 5709585. DOI: 10.1128/JVI.01428-17. View

3.
Chapman D, Tcherepanov V, Upton C, Dixon L . Comparison of the genome sequences of non-pathogenic and pathogenic African swine fever virus isolates. J Gen Virol. 2008; 89(Pt 2):397-408. DOI: 10.1099/vir.0.83343-0. View

4.
Onisk D, Borca M, Kutish G, Kramer E, Irusta P, Rock D . Passively transferred African swine fever virus antibodies protect swine against lethal infection. Virology. 1994; 198(1):350-4. DOI: 10.1006/viro.1994.1040. View

5.
Lewis T, Zsak L, Burrage T, Lu Z, Kutish G, Neilan J . An African swine fever virus ERV1-ALR homologue, 9GL, affects virion maturation and viral growth in macrophages and viral virulence in swine. J Virol. 2000; 74(3):1275-85. PMC: 111462. DOI: 10.1128/jvi.74.3.1275-1285.2000. View