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ACS Nano . Conformational Dynamics of Influenza A Virus Ribonucleoprotein Complexes during RNA Synthesis

tetano

Editor, Senior Moderator
ACS Nano


. 2024 Jul 16.
doi: 10.1021/acsnano.4c01362. Online ahead of print. Conformational Dynamics of Influenza A Virus Ribonucleoprotein Complexes during RNA Synthesis

Diego Carlero[SUP] 1 [/SUP], Shingo Fukuda[SUP] 2 [/SUP], Rebeca Bocanegra[SUP] 3 4 [/SUP], Toshio Ando[SUP] 2 [/SUP], Jaime Martin-Benito[SUP] 4 [/SUP], Borja Ibarra[SUP] 3 4 [/SUP]



Affiliations
Abstract

Viral ribonucleoproteins (vRNPs) are the cornerstones of viral proliferation, as they form the macromolecular complexes that are responsible for the transcription and replication of most single-stranded RNA viruses. The influenza A virus (IAV) polymerase catalyzes RNA synthesis within the context of vRNPs where genomic viral RNA (vRNA) is packaged by the viral nucleoprotein (NP). We used high-speed atomic force microscopy and electron microscopy to study the conformational dynamics of individual IAV recombinant RNPs (rRNPs) during RNA synthesis. The rRNPs present an annular organization that allows for the real-time tracking of conformational changes in the NP-vRNA template caused by the advancing polymerase. We demonstrate that the rRNPs undergo a well-defined conformational cycle during RNA synthesis, which can be interpreted in light of previous transcription models. We also present initial estimations of the average RNA synthesis rate in the rRNP and its dependence on the nucleotide concentration and stability of the nascent RNA secondary structures. Furthermore, we provide evidence that rRNPs can perform consecutive cycles of RNA synthesis, accounting for their ability to recycle and generate multiple copies of RNA.

Keywords: Conformational dynamics; Electron microscopy; High-speed atomic force microscopy; Influenza A virus; RNA synthesis; Single-molecule biophysics.

 
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