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TitleA genus-specific nsp12 region impacts polymerase assembly in Alpha- and Gammacoronaviruses.
Journal, issue, pagesbioRxiv, Year 2024
Publish dateJul 24, 2024
AuthorsPeter J Hoferle / Thomas K Anderson / Robert N Kirchdoerfer
PubMed AbstractCoronavirus relevancy for human health has surged over the past 20 years as they have a propensity for spillover into humans from animal reservoirs resulting in pandemics such as COVID-19. The ...Coronavirus relevancy for human health has surged over the past 20 years as they have a propensity for spillover into humans from animal reservoirs resulting in pandemics such as COVID-19. The diversity within the subfamily and high infection frequency in animal species worldwide creates a looming threat that calls for research across all genera within the subfamily. We sought to contribute to the limited structural knowledge within the genera and determined the structure of the viral core replication-transcription complex (RTC) from Infectious Bronchitis Virus (IBV) using single-particle cryo-EM. Comparison between our IBV structure with published RTC structures from other genera reveals structural differences across genera. Using biochemical assays, we characterized these differences and revealed their differing involvement in core RTC formation across different genera. Our findings highlight the value of cross-genera studies, as they show genera specific features in coronavirus genome replication. A broader knowledge of coronavirus replication will better prepare us for future coronavirus spillovers.
External linksbioRxiv / PubMed:39091740 / PubMed Central
MethodsEM (single particle)
Resolution3.5 Å
Structure data

EMDB-45805, PDB-9cpo:
Infectious bronchitis virus core polymerase complex
Method: EM (single particle) / Resolution: 3.5 Å

Chemicals

ChemComp-ZN:
Unknown entry

Source
  • infectious bronchitis virus
  • severe acute respiratory syndrome coronavirus 2
KeywordsVIRAL PROTEIN / IBV / Coronavirus / nsp12 / RdRp / RTC

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