An emerging PB2-627 polymorphism increases the pandemic potential of avian influenza virus by breaking through ANP32 host restriction in mammalian and avian hosts
Guo, Y.; Shu, S.; Zhou, Y.; Peng, W.; Jiang, Z.; Li, Y.; Li, T.; Du, F.; Wang, L.; Chen, X.; Dong, J.; Zhao, C.; Wang, M. H.; Sun, Y.; Sun, H.; Lu, L.; Digard, P.; Chang, K.-c.; Yen, H.-L.; Liu, J.; Pu, J.
Show abstract
Alterations in the PB2-627 domain could substantially increase the risk of an avian influenza virus (AIV) pandemic. So far, a well-known mammalian mutation PB2-E627K has not been maintained in AIV in poultry, which limits the spread of AIVs from avian to humans. Here, we discovered a variant, PB2-627V, which combines the properties of avian-like PB2-627E and human-like PB2-627K, overcoming host restrictions and posing a risk for human pandemics. Specifically, by screening the global PB2 sequences, we discovered a new independent cluster with PB2-627V emerged in the 2010s, which is prevalent in various avian, mammalian, and human isolates of AIVs, including H9N2, H7N9, H3N8, 2.3.4.4b H5N1, and other subtypes. And, the increasing prevalence of PB2-627V in poultry is accompanied by a rise in human infection cases with this variant. Then we systematically assessed its host adaptation, fitness, and transmissibility across three subtypes of AIVs (H9N2, H7N9, and H3N8) in different host models, including avian and human cells, chickens, mice, and ferrets where infections naturally occur. We found that PB2-627V facilitates AIVs to efficiently infect and replicate in chickens and mice by utilizing both avian- and human-origin ANP32A proteins. Importantly, and like PB2-627K, PB2-627V promotes efficient transmission between ferrets through respiratory droplets. Deep sequencing in passaged chicken samples and transmitted ferret samples indicates that PB2-627V remains stable across the two distinct hosts and has a high potential for long-term prevalence in avian species. Therefore, the mutation has the ability to continue spreading among poultry and can also overcome the barrier between birds and humans, greatly enhancing the likelihood of AIVs infecting humans. Given the escalating global spread of AIVs, it is crucial to closely monitor influenza viruses carrying PB2-627V to prevent a pandemic.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Replication Kinetics, Pathogenicity and Virus-induced Cellular Responses of Cattle-origin Influenza A(H5N1) Isolates from Texas, United States 97%
- Risk Assessment of the newly emerged H7N9 avian influenza viruses 96%
- Pigs are highly susceptible to but do not transmit mink-derived highly pathogenic avian influenza virus H5N1 clade 2.3.4.4b 96%
Similar papers in this journal
- Tissue tropisms of avian influenza A viruses affect their spillovers from wild birds to pigs 98%
- Differential antigenic imprinting effects between influenza H1N1 hemagglutinin and neuraminidase in a mouse model 98%
- Preferential selection and contribution of non-structural protein 1 (NS1) to the efficient transmission of the panzootic avian influenza H5N8 2.3.4.4 clades A and B viruses in chickens and ducks 96%
Similar papers in this journal
- Dysregulation of M segment gene expression contributes to influenza A virus host restriction 96%
- The impact of clade B lineage 5 MERS coronaviruses spike mutations from 2015 to 2023 on virus entry and replication competence 96%
- Balancing the influenza neuraminidase and hemagglutinin responses by exchanging the vaccine virus backbone 96%
Similar papers in this journal
- A rapid and flexible microneutralization assay for serological assessment of influenza viruses 94%
- Measures of population immunity can predict the dominant clade of influenza A (H3N2) and reveal age-associated differences in susceptibility and specificity 93%
- Rapid neutralizing assay for circulating H5N1 influenza virus in dairy cows 93%
Similar papers in this journal
- Imprinted anti-hemagglutinin and anti-neuraminidase antibody responses after childhood infections of A(H1N1) and A(H1N1)pdm09 influenza viruses 96%
- Are we serologically prepared against an avian influenza pandemic and could seasonal flu vaccines help us? 96%
- Cell-to-cell variation in defective virus expression and effects on host responses during influenza virus infection 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.