TY - JOUR
T1 - Pre-assembly of biomolecular condensate seeds drives RSV replication
AU - Ratnayake, Dhanushika
AU - Galloux, Marie
AU - Boersma, Sanne
AU - Noerenberg, Marko
AU - Sizun, Christina
AU - Sacristan, Carlos
AU - Sourimant, Julien
AU - Lakerveld, Anke J.
AU - Gelderloos, Anne T.
AU - Apperloo, Leonie
AU - Demyanenko, Yana
AU - Baars, Matthijs J.D.
AU - Banerjee, Rupa
AU - Dreier, Birgit
AU - Furler, Sven
AU - Mazur, Natalie I.
AU - Bont, Louis J.
AU - Mohammed, Shabaz
AU - Plückthun, Andreas
AU - Éléouët, Jean François
AU - Kops, Geert J.P.L.
AU - Castello, Alfredo
AU - van Kasteren, Puck B.
AU - Rameix-Welti, Marie Anne
AU - Tanenbaum, Marvin E.
N1 - © 2026. The Author(s).
PY - 2026/4/2
Y1 - 2026/4/2
N2 - During infection, many RNA viruses, including respiratory syncytial virus (RSV), form specialized biomolecular condensates, viral factories (VFs), where viral transcription and replication occur1,2. Paradoxically, high protein concentrations are typically required for condensate nucleation3, yet attaining sufficient protein levels in infection is thought to require VFs for viral transcription and replication. Here, to uncover how viruses solve this paradox to establish VFs, we visualized early infection of RSV in real time with single genomic viral ribonucleoprotein (vRNP) resolution. Our results reveal that VFs are nucleated from infecting vRNPs rather than de novo in the cytoplasm. VF nucleation further requires in-virion pre-assembly of viral protein–protein interaction networks on vRNPs to form ‘pre-replication centres’ (PRCs). PRCs are potent condensate nucleation seeds due to their efficient recruitment and retention of viral proteins. The high affinity of PRCs also results in increased association of the viral polymerase and its co-factors, allowing efficient viral transcription even in the absence of VFs. Together, these activities create a feed-forward loop that drives rapid VF formation. PRC assembly depends on in-virion viral protein levels and is highly heterogeneous among virions, explaining cell-to-cell heterogeneity in infection progression, and identifying heterogeneous virions as an important origin of infection heterogeneity. Together, our results show that in-virion pre-assembly of PRCs kick-starts viral condensate nucleation upon host-cell entry and explains cell-to-cell heterogeneity in RSV infection.
AB - During infection, many RNA viruses, including respiratory syncytial virus (RSV), form specialized biomolecular condensates, viral factories (VFs), where viral transcription and replication occur1,2. Paradoxically, high protein concentrations are typically required for condensate nucleation3, yet attaining sufficient protein levels in infection is thought to require VFs for viral transcription and replication. Here, to uncover how viruses solve this paradox to establish VFs, we visualized early infection of RSV in real time with single genomic viral ribonucleoprotein (vRNP) resolution. Our results reveal that VFs are nucleated from infecting vRNPs rather than de novo in the cytoplasm. VF nucleation further requires in-virion pre-assembly of viral protein–protein interaction networks on vRNPs to form ‘pre-replication centres’ (PRCs). PRCs are potent condensate nucleation seeds due to their efficient recruitment and retention of viral proteins. The high affinity of PRCs also results in increased association of the viral polymerase and its co-factors, allowing efficient viral transcription even in the absence of VFs. Together, these activities create a feed-forward loop that drives rapid VF formation. PRC assembly depends on in-virion viral protein levels and is highly heterogeneous among virions, explaining cell-to-cell heterogeneity in infection progression, and identifying heterogeneous virions as an important origin of infection heterogeneity. Together, our results show that in-virion pre-assembly of PRCs kick-starts viral condensate nucleation upon host-cell entry and explains cell-to-cell heterogeneity in RSV infection.
KW - Virus Replication
KW - Respiratory Syncytial Virus Infections/virology
KW - Humans
KW - Virion/metabolism
KW - Transcription, Genetic
KW - Genome, Viral/genetics
KW - Ribonucleoproteins/metabolism
KW - Biomolecular Condensates/metabolism
KW - Viral Proteins/metabolism
KW - Virus Assembly
KW - Respiratory Syncytial Virus, Human/physiology
KW - Protein Interaction Maps
UR - https://www.scopus.com/pages/publications/105028897344
U2 - 10.1038/s41586-025-10071-5
DO - 10.1038/s41586-025-10071-5
M3 - Article
C2 - 41606345
AN - SCOPUS:105028897344
SN - 0028-0836
VL - 652
SP - 189
EP - 200
JO - Nature
JF - Nature
IS - 8108
ER -