EMD-18408

Single-particle
3.6 Å
EMD-18408 Deposition: 07/09/2023
Map released: 27/03/2024
Last modified: 27/03/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-18408

Chimeric cryo-EM map of Hantaan virus polymerase in hexameric state

EMD-18408

Single-particle
3.6 Å
EMD-18408 Deposition: 07/09/2023
Map released: 27/03/2024
Last modified: 27/03/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Hantaan virus 76-118
Sample: Hantaan virus polymerase
Fitted models: 8qhd (Avg. Q-score: 0.318)

Deposition Authors: Durieux Trouilleton Q , Arragain B , Malet H
Structural characterization of the oligomerization of full-length Hantaan virus polymerase into symmetric dimers and hexamers.
Durieux Trouilleton Q , Housset D, Tarillon P , Arragain B , Malet H
(2024) Nat Commun , 15 , 2256 - 2256
PUBMED: 38480734
DOI: doi:10.1038/s41467-024-46601-4
ISSN: 2041-1723
Abstract:
Hantaan virus is a dangerous human pathogen whose segmented negative-stranded RNA genome is replicated and transcribed by a virally-encoded multi-functional polymerase. Here we describe the complete cryo-electron microscopy structure of Hantaan virus polymerase in several oligomeric forms. Apo polymerase protomers can adopt two drastically different conformations, which assemble into two distinct symmetric homodimers, that can themselves gather to form hexamers. Polymerase dimerization induces the stabilization of most polymerase domains, including the C-terminal domain that contributes the most to dimer's interface, along with a lariat region that participates to the polymerase steadying. Binding to viral RNA induces significant conformational changes resulting in symmetric oligomer disruption and polymerase activation, suggesting the possible involvement of apo multimers as protecting systems that would stabilize the otherwise flexible C-terminal domains. Overall, these results provide insights into the multimerization capability of Hantavirus polymerase and may help to define antiviral compounds to counteract these life-threatening viruses.