» Articles » PMID: 38123676

Structures of the Promoter-bound Respiratory Syncytial Virus Polymerase

Abstract

The respiratory syncytial virus (RSV) polymerase is a multifunctional RNA-dependent RNA polymerase composed of the large (L) protein and the phosphoprotein (P). It transcribes the RNA genome into ten viral mRNAs and replicates full-length viral genomic and antigenomic RNAs. The RSV polymerase initiates RNA synthesis by binding to the conserved 3'-terminal RNA promoters of the genome or antigenome. However, the lack of a structure of the RSV polymerase bound to the RNA promoter has impeded the mechanistic understanding of RSV RNA synthesis. Here we report cryogenic electron microscopy structures of the RSV polymerase bound to its genomic and antigenomic viral RNA promoters, representing two of the first structures of an RNA-dependent RNA polymerase in complex with its RNA promoters in non-segmented negative-sense RNA viruses. The overall structures of the promoter-bound RSV polymerases are similar to that of the unbound (apo) polymerase. Our structures illustrate the interactions between the RSV polymerase and the RNA promoters and provide the structural basis for the initiation of RNA synthesis at positions 1 and 3 of the RSV promoters. These structures offer a deeper understanding of the pre-initiation state of the RSV polymerase and could aid in antiviral research against RSV.

Citing Articles

Structural basis of Nipah virus RNA synthesis.

Sala F, Ditter K, Dybkov O, Urlaub H, Hillen H Nat Commun. 2025; 16(1):2261.

PMID: 40050611 PMC: 11885841. DOI: 10.1038/s41467-025-57219-5.


Structural and functional analysis of the Nipah virus polymerase complex.

Hu S, Kim H, Yang P, Yu Z, Ludeke B, Mobilia S Cell. 2025; 188(3):688-703.e18.

PMID: 39837328 PMC: 11813165. DOI: 10.1016/j.cell.2024.12.021.


Structure of the Nipah virus polymerase complex.

Balikci E, Gunl F, Carrique L, Keown J, Fodor E, Grimes J EMBO J. 2024; 44(2):563-586.

PMID: 39739115 PMC: 11730344. DOI: 10.1038/s44318-024-00321-z.


Cryo-EM structure of Nipah virus RNA polymerase complex.

Wang Y, Zhao L, Zhang Y, Wang Y, Tang J, Liu S Sci Adv. 2024; 10(50):eadr7116.

PMID: 39661676 PMC: 11633731. DOI: 10.1126/sciadv.adr7116.


Structure of the Nipah virus polymerase phosphoprotein complex.

Yang G, Wang D, Liu B Nat Commun. 2024; 15(1):8673.

PMID: 39375338 PMC: 11458586. DOI: 10.1038/s41467-024-52701-y.


References
1.
Whelan S, Barr J, Wertz G . Transcription and replication of nonsegmented negative-strand RNA viruses. Curr Top Microbiol Immunol. 2004; 283:61-119. DOI: 10.1007/978-3-662-06099-5_3. View

2.
Ouizougun-Oubari M, Fearns R . Structures and Mechanisms of Nonsegmented, Negative-Strand RNA Virus Polymerases. Annu Rev Virol. 2023; 10(1):199-215. DOI: 10.1146/annurev-virology-111821-102603. View

3.
Staadegaard L, Caini S, Wangchuk S, Thapa B, de Almeida W, de Carvalho F . The Global Epidemiology of RSV in Community and Hospitalized Care: Findings From 15 Countries. Open Forum Infect Dis. 2021; 8(7):ofab159. PMC: 8320297. DOI: 10.1093/ofid/ofab159. View

4.
Li Y, Wang X, Blau D, Caballero M, Feikin D, Gill C . Global, regional, and national disease burden estimates of acute lower respiratory infections due to respiratory syncytial virus in children younger than 5 years in 2019: a systematic analysis. Lancet. 2022; 399(10340):2047-2064. PMC: 7613574. DOI: 10.1016/S0140-6736(22)00478-0. View

5.
Liang B . Structures of the Polymerases. J Virol. 2020; 94(22). PMC: 7592205. DOI: 10.1128/JVI.00175-20. View