Contemporary Enterovirus D68 strains show enhanced replication and translation at 37°C
Smith, B.; Pekosz, A.
Show abstract
Enterovirus D68 (EV-D68) emerged in 2014 as an important pathogen linked to severe lower respiratory disease and acute flaccid myelitis outbreaks. Historically associated with mild common-cold-like symptoms, clusters of severe disease attributed to EV-D68 appeared during a series of outbreaks in 2014, 2016, and 2018. Previous studies of historic EV-D68 strains demonstrated attenuated replication at temperatures of the lower respiratory tract (37{degrees}C), when compared to the upper respiratory tract (32{degrees}C). By testing a panel of historic and contemporary EV-D68 strains at 32{degrees}C and 37{degrees}C, we demonstrate that contemporary strains of EV-D68 undergo little to no attenuation at increased temperatures. Contemporary strains produced higher levels of viral proteins at 32{degrees}C and 37{degrees}C than historic strains, although both strains infected similar numbers of cells and had comparable amounts of replication complexes. IRES activity assays with dual-luciferase reporter plasmids demonstrated enhanced translation in recent EV-D68 strains mapped to regions of variability in the 5 UTR found only in contemporary strains. Using an infectious clone system, we demonstrate that the translation advantage dictated by the 5 UTR does not solely mediate temperature sensitivity. The strain-dependent effects of temperature on the EV-D68 life cycle gives insight into the susceptibility of the lower respiratory system to contemporary strains. IMPORTANCEEnterovirus-D68 (EV-D68) emerged in 2014 as a causative agent of biannual severe pediatric respiratory disease and acute flaccid myelitis (AFM). We show that recent EV-D68 viruses have gained the ability to replicate at 37{degrees}C. Enhanced virus protein translation seemed to correlate with enhanced virus replication at 37{degrees}C but other genetic factors are also contributing to this phenotype. An enhanced ability to replicate at core body temperature may have allowed EV-D68 to penetrate both lower in the respiratory tract and into the central nervous system, explaining the recent surge in severe disease associated with virus infection.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Novel replication-competent reporter-expressing Rift Valley fever viruses for molecular studies 97%
- Contribution of segment 3 to the acquisition of virulence in contemporary H9N2 avian influenza viruses 97%
- Recombinant rotaviruses rescued by reverse genetics reveal the role of NSP5 hyperphosphorylation in the assembly of viral factories 97%
Similar papers in this journal
- Dysregulation of M segment gene expression contributes to influenza A virus host restriction 97%
- Rapid adaptation to human protein kinase R by a unique genomic rearrangement in rhesus cytomegalovirus. 97%
- The RNA pseudoknots in foot-and-mouth disease virus are dispensable for genome replication but essential for the production of infectious virus. 96%
Similar papers in this journal
- Establishment of a reverse genetic system from a bovine derived Influenza D virus isolate. 96%
- Generated randomly and selected functionally? The nature of enterovirus recombination 96%
- SARS-CoV-2 variants from long-term, persistently infected immunocompromised patients have altered syncytia formation, temperature-dependent replication, and serum neutralizing antibody escape 96%
Similar papers in this journal
- SARS-CoV-2 growth, furin-cleavage-site adaptation and neutralization using serum from acutely infected, hospitalized COVID-19 patients 97%
- PA-X is an avian virulence factor in H9N2 avian influenza virus 95%
- A novel tamanavirus (Flaviviridae) of the European common frog (Rana temporaria) encodes a divergent class 1b XRN1-resistant RNA element. 95%
Similar papers in this journal
- Genetic insertion of mouse Myxovirus-resistance gene 1 increases innate resistance against both high and low pathogenic avian influenza virus by significantly decreasing replication in chicken DF1 cell line 96%
- Novel Paju Apodemus Paramyxovirus 1 and 2, Harbored by Apodemus agrarius in The Republic of Korea 95%
- Evolution of resistance to fluoroquinolones by dengue virus serotype 4 provides insight into mechanism of action and consequences for viral fitness 95%
"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.