Skip to content

Author

Hongsheng Ouyang

We have 2 of 8 papers

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Open access Sep 2026

PRMT3 restricts porcine epidemic diarrhea virus replication by disrupting the interaction between VAPA and the viral nucleocapsid protein

Porcine epidemic diarrhea virus (PEDV) represents a severe threat to the global swine industry. Its infection process involves intricate virus–host interactions and immune evasion mechanisms, but effective therapeutic targets remain elusive. In this study, we identified protein arginine methyltransferase 3 (PRMT3) as a novel regulatory factor that significantly modulates PEDV infection via genome-wide CRISPR/Cas9 knockout library screening. Knockout or inhibition of PRMT3 markedly enhanced PEDV infection in multiple cell lines, including LLC-PK1, IPEC-J2, and primary porcine intestinal epithelial cells. Mechanistic investigations revealed that PRMT3 can restrict PEDV infection by interacting with vesicle-associated membrane protein-associated protein A (VAPA). Further analysis revealed that VAPA facilitates cholesterol transport through binding to oxysterol-binding protein (OSBP) and inhibits the autophagic degradation of the viral nucleocapsid (N) protein, with both processes being critical for promoting PEDV infection in host cells. A detailed analysis revealed that K52 within its major sperm protein (MSP) domain interacts with D404 and D405 in the two phenylalanines in an acidic tract (FFAT)-like motifs of the N protein, and these interactions proved essential for PEDV infection. In summary, this is the first study to identify and validate the PRMT3–VAPA–N protein autophagic degradation axis as a key pathway through which PRMT3 suppresses PEDV infection, with VAPA acting as an essential host factor for PEDV pathogenesis. These findings uncover novel signaling pathways and molecular targets for the development of anti-PEDV therapeutics.

He-Yong Wu, Shu-Yu Zhong, Ao-Si Qi et al. · 0 citations
Open access Jul 2026

Whole-Genome Resequencing-Based Selection-Signal and Association Analyses Prioritize Candidate Genes and Haplotypes for PRRS Resistance-Related Traits in Pigs

Simple Summary Porcine reproductive and respiratory syndrome is a serious infectious disease that causes reproductive problems, breathing illness, and major economic losses in pig production. Vaccines and farm management help control the disease, but they do not always provide enough protection because the virus changes easily. This study aimed to find inherited genetic features that may help identify pigs with better natural resistance to this disease. Pigs were first screened after vaccination and then after exposure to the virus, and animals with clearly different disease-response patterns were selected for detailed genetic analysis. By comparing genetic differences between resistant and susceptible pigs and combining these results with public data showing how genes behave during infection, this study identified several candidate genes and genetic regions related to disease response. A region on chromosome 8, especially around genes named NFXL1 and NIPAL1, was highlighted, and a specific genetic pattern in this region was more common in resistant pigs. These findings provide useful clues for future testing and may support breeding programs aimed at improving disease resistance in pigs.

Mengjie Lian, Jia-Qi Wang, Aishi Xu et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.