Influenza A viruses (IAVs) can overcome species barriers by adaptation of the receptor-binding site of the hemagglutinin (HA). To initiate infection, HAs bind to glycan receptors with terminal sialic acids, which are either -acetylneuraminic acid (NeuAc) or -glycolylneuraminic acid (NeuGc); the latter is mainly found in horses and pigs but not in birds and humans. We investigated the influence of previously identified equine NeuGc-adapting mutations (S128T, I130V, A135E, T189A, and K193R) in avian H7 IAVs and . We observed that these mutations negatively affected viral replication in chicken cells but not in duck cells and positively affected replication in horse cells. , the mutations reduced virus virulence and mortality in chickens. Ducks excreted high viral loads longer than chickens, although they appeared clinically healthy. To elucidate why these viruses infected chickens and ducks despite the absence of NeuGc, we re-evaluated the receptor binding of H7 HAs using glycan microarray and flow cytometry studies. This re-evaluation demonstrated that mutated avian H7 HAs also bound to α2,3-linked NeuAc and sialyl-LewisX, which have an additional fucose moiety in their terminal epitope, explaining why infection of ducks and chickens was possible. Interestingly, the α2,3-linked NeuAc and sialyl-LewisX epitopes were only bound when presented on tri-antennary -glycans, emphasizing the importance of investigating the fine receptor specificities of IAVs. In conclusion, the binding of NeuGc-adapted H7 IAV to tri-antennary -glycans enables viral replication and shedding by chickens and ducks, potentially facilitating interspecies transmission of equine-adapted H7 IAVs.IMPORTANCEInfluenza A viruses (IAVs) cause millions of deaths and illnesses in birds and mammals each year. The viral surface protein hemagglutinin initiates infection by binding to host cell terminal sialic acids. Hemagglutinin adaptations affect the binding affinity to these sialic acids and the potential host species targeted. While avian and human IAVs tend to bind to -acetylneuraminic acid (sialic acid), equine H7 viruses prefer binding to -glycolylneuraminic acid (NeuGc). To better understand the function of NeuGc-specific adaptations in hemagglutinin and to elucidate interspecies transmission potential NeuGc-adapted viruses, we evaluated the effects of NeuGc-specific mutations in avian H7 viruses in chickens and ducks, important economic hosts and reservoir birds, respectively. We also examined the impact on viral replication and found a binding affinity to tri-antennary -glycans containing different terminal epitopes. These findings are significant as they contribute to the understanding of the role of receptor binding in avian influenza infection.
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http://dx.doi.org/10.1128/jvi.01941-23 | DOI Listing |
Cureus
December 2024
Department of Biology, College of Science, Polytechnic University of the Philippines, Manila, PHL.
Background: This study investigates the prevalence and intensity of parasitic infections in animal fecal samples collected from Sitio Ibayo, San Mateo, Rizal, Philippines, a suburban community considered a potential sentinel site for zoonotic disease surveillance.
Methods: Using cross-sectional sampling, 132 animal fecal samples were collected in the area exhaustively. Samples were processed through direct smear with saline solution and Lugol's iodine and flotation technique using mini- and fill-FLOTAC.
Int J Biol Macromol
January 2025
College of Animal Science and Technology, Jiangxi Agricultural University, Nanchang, 330045, PR China. Electronic address:
Due to the lack of specific antibody anti-chicken tumor necrosis factor receptor-associated factor 2 (TRAF2), it is difficult to further explore the role of TRAF2 in pulmonary artery remodeling in pulmonary hypertension(PH) in broilers. In this experiment, we prepared a polyclonal antibody to TRAF2 by constructing a TRAF2 recombinant protein prokaryotic expression vector and analyzed the expression of TRAF2 in in vivo and in vitro models of pulmonary hypertension in broiler chickens and the effect of TRAF2 on the activity and apoptosis of PASMCs. The results showed that after immunization with TRAF2 recombinant protein we obtained high titers of polyclonal antibodies, and astragalus polysaccharide as an immune adjuvant could enhance the effect of immunization.
View Article and Find Full Text PDFArch Virol
January 2025
National Institute of Animal Health, National Agriculture and Food Research Organization, 3-1-5 Kannondai, Tsukuba, Ibaraki, 305-0856, Japan.
Migratory water birds are considered to be carriers of high pathogenicity avian influenza viruses (HPAIVs). In Japan, mallards are often observed during winter, and HPAIV-infected mallards often shed viruses asymptomatically. In this study, we focused on mallards as potential carriers of HPAIVs and investigated whether individual wild mallards are repeatedly infected with HPAIVs and act as HPAIV carriers multiple times within a season.
View Article and Find Full Text PDFPoult Sci
January 2025
Institute of Animal Husbandry and Veterinary Science, Jiangxi Academy of Agricultural Sciences, Nanchang 330200, PR China; Jiangxi Provincial Key Laboratory of Green and Healthy Breeding of Livestock and Poultry, Nanchang 330200, PR China. Electronic address:
Avian pathogen Escherichia coli (APEC) poses a significant threat to poultry farming, causing colibacillosis in various hosts, including chickens, ducks, geese, and pigeons. This study aimed to investigate the molecular epidemiology of APEC in Jiangxi Province, China, to inform prevention and control strategies. Between 2020 and 2024, 186 APEC strains were isolated and identified, with 88.
View Article and Find Full Text PDFVirus Evol
December 2024
National Key Laboratory of Veterinary Public Health and Safety, Key Laboratory for Prevention and Control of Avian Influenza and Other Major Poultry Diseases, Ministry of Agriculture and Rural Affairs, College of Veterinary Medicine, China Agricultural University, 2 Yuanmingyuan West Road, Haidian District, Beijing 100193, China.
The H9N2 subtype of avian influenza viruses (AIVs) is widely prevalent in poultry and wild birds globally, with occasional transmission to humans. In comparison to other H9N2 lineages, the BJ/94 lineage has raised more public health concerns; however, its evolutionary dynamics and transmission patterns remain poorly understood. In this study, we demonstrate that over three decades (1994-2023), BJ/94 lineage has undergone substantial expansion in its geographical distribution, interspecies transmission, and viral reassortment with other AIV subtypes, increasing associated public health risks.
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