ArticleFrontiers in microbiology2022
Knockout of HDAC9 Gene Enhances Foot-and-Mouth Disease Virus Replication.
Article in Frontiers in microbiology, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 14 citations in OpenAlex.
- Suppressor tRNA-mediated conditionally replicating live vaccine effectively protects pigs against Seneca Valley virus challenge.NPJ vaccines · 2026Article
- CRISPR-based screening of host factors in veterinary viral infections: from target discovery to host-directed antiviral strategies.Frontiers in veterinary science · 2026Review
- HDAC9 in Insulin Resistance: An Update on Epigenetic Mechanisms, Inflammatory Crosstalk, and Therapeutic Potential.Diabetes, metabolic syndrome and obesity : targets and therapy · 2026Review
- Coronavirus M protein impairs cilium during early infection by enhancing the AurA-HDAC6 axis.PLoS pathogens · 2025Article
- Article
- Knockout of the WD40 domain of ATG16L1 enhances foot and mouth disease virus replication.BMC genomics · 2024Article
- Article
- Construction of an IFNAR1 knockout MDBK cell line using CRISPR/Cas9 and its effect on bovine virus replication.Frontiers in immunology · 2024Article
- Histone deacetylase 8 promotes innate antiviral immunity through deacetylation of RIG-I.Frontiers in cellular and infection microbiology · 2024Article
- Review
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Authors and funding
12 authors at 3 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Foot-and-mouth disease virus (FMDV) is a highly contagious viral disease that mainly infects cloven-hoofed animals. Propagation of FMDV by cell culture is an important method to preserve viral biological and antigenic characteristics, which is crucial in FMD monitoring and vaccine production. However, only a few cell lines are sensitive to FMDV, and there is still a lot of room for improvement. Acetylation is an important post-translational modification, which is dynamically regulated by histone acetyltransferases (HATs) and histone deacetylases (HDACs). However, the study of the relationship between FMDV and HDACs is still unclear. HDAC9 belongs to the class II of HDACs family; in this study, HDAC9 knockout (KO) BHK-21 cells were successfully established using CRISPR/cas9 technology. The results of karyotype analysis, growth curve analysis, and morphological observation showed that the HDAC9 knockout cell line was stable in growth and morphological characteristics. After infection with FMDV, the expression of viral RNA and protein, viral titers, and the copies of viral RNA in HDAC9-KO cells were significantly higher than those in NC cells. Meanwhile, RNA-seq technology was used to sequence HDAC9-KO cells and NC cells infected and uninfected with FMDV. It was found that the differentially expressed innate immune factors containing NFKBIA, SOD2, IL2RG, BCL2L1, CXCL1/2/3, and IL1RAP have significantly enriched in the Jak-STAT, NOD-like receptor, Toll-like receptor, NF-κB, and MAPK signaling pathway. RT-qPCR was performed to detect the expression level of differentially expressed genes and showed consistency with the RNA-seq data. These results preliminarily reveal the role of HDAC9 in host antiviral innate immune response, and the HDAC9-KO cell line could also serve as a useful tool for FMDV research.
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