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Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies

Human metapneumovirus (HMPV) inclusion bodies (IBs) are dynamic structures required for efficient viral replication and transcription. The minimum components needed to form IB-like structures in cells are the nucleoprotein (N) and the tetrameric phosphoprotein (P). HMPV P binds to the following two...

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Autores principales: Boggs, Kerri Beth, Edmonds, Kearstin, Cifuentes-Munoz, Nicolas, El Najjar, Farah, Ossandón, Conny, Roe, McKenna, Wu, Chao, Moncman, Carole L., Creamer, Trevor P., Amarasinghe, Gaya K., Leung, Daisy W., Dutch, Rebecca Ellis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239117/
https://www.ncbi.nlm.nih.gov/pubmed/35536005
http://dx.doi.org/10.1128/mbio.01099-22
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author Boggs, Kerri Beth
Edmonds, Kearstin
Cifuentes-Munoz, Nicolas
El Najjar, Farah
Ossandón, Conny
Roe, McKenna
Wu, Chao
Moncman, Carole L.
Creamer, Trevor P.
Amarasinghe, Gaya K.
Leung, Daisy W.
Dutch, Rebecca Ellis
author_facet Boggs, Kerri Beth
Edmonds, Kearstin
Cifuentes-Munoz, Nicolas
El Najjar, Farah
Ossandón, Conny
Roe, McKenna
Wu, Chao
Moncman, Carole L.
Creamer, Trevor P.
Amarasinghe, Gaya K.
Leung, Daisy W.
Dutch, Rebecca Ellis
author_sort Boggs, Kerri Beth
collection PubMed
description Human metapneumovirus (HMPV) inclusion bodies (IBs) are dynamic structures required for efficient viral replication and transcription. The minimum components needed to form IB-like structures in cells are the nucleoprotein (N) and the tetrameric phosphoprotein (P). HMPV P binds to the following two versions of the N protein in infected cells: N-terminal P residues interact with monomeric N (N(0)) to maintain a pool of protein to encapsidate new RNA and C-terminal P residues interact with oligomeric, RNA-bound N (N-RNA). Recent work on other negative-strand viruses has suggested that IBs are, at least in part, liquid-like phase-separated membraneless organelles. Here, HMPV IBs in infected or transfected cells were shown to possess liquid organelle properties, such as fusion and fission. Recombinant versions of HMPV N and P proteins were purified to analyze the interactions required to drive phase separation in vitro. Purified HMPV P was shown to form liquid droplets in isolation. This observation is distinct from other viral systems that also form IBs. Partial removal of nucleic acid from purified P altered phase-separation dynamics, suggesting that nucleic acid interactions play a role in IB formation. HMPV P also recruits monomeric N (N(0)-P) and N-RNA to droplets in vitro. These findings suggest that HMPV P may also act as a scaffold protein to mediate multivalent interactions with monomeric and oligomeric N, as well as RNA, to promote phase separation of IBs. Together, these findings highlight an additional layer of regulation in HMPV replication by the viral P and N proteins.
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spelling pubmed-92391172022-06-29 Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies Boggs, Kerri Beth Edmonds, Kearstin Cifuentes-Munoz, Nicolas El Najjar, Farah Ossandón, Conny Roe, McKenna Wu, Chao Moncman, Carole L. Creamer, Trevor P. Amarasinghe, Gaya K. Leung, Daisy W. Dutch, Rebecca Ellis mBio Research Article Human metapneumovirus (HMPV) inclusion bodies (IBs) are dynamic structures required for efficient viral replication and transcription. The minimum components needed to form IB-like structures in cells are the nucleoprotein (N) and the tetrameric phosphoprotein (P). HMPV P binds to the following two versions of the N protein in infected cells: N-terminal P residues interact with monomeric N (N(0)) to maintain a pool of protein to encapsidate new RNA and C-terminal P residues interact with oligomeric, RNA-bound N (N-RNA). Recent work on other negative-strand viruses has suggested that IBs are, at least in part, liquid-like phase-separated membraneless organelles. Here, HMPV IBs in infected or transfected cells were shown to possess liquid organelle properties, such as fusion and fission. Recombinant versions of HMPV N and P proteins were purified to analyze the interactions required to drive phase separation in vitro. Purified HMPV P was shown to form liquid droplets in isolation. This observation is distinct from other viral systems that also form IBs. Partial removal of nucleic acid from purified P altered phase-separation dynamics, suggesting that nucleic acid interactions play a role in IB formation. HMPV P also recruits monomeric N (N(0)-P) and N-RNA to droplets in vitro. These findings suggest that HMPV P may also act as a scaffold protein to mediate multivalent interactions with monomeric and oligomeric N, as well as RNA, to promote phase separation of IBs. Together, these findings highlight an additional layer of regulation in HMPV replication by the viral P and N proteins. American Society for Microbiology 2022-05-10 /pmc/articles/PMC9239117/ /pubmed/35536005 http://dx.doi.org/10.1128/mbio.01099-22 Text en Copyright © 2022 Boggs et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Boggs, Kerri Beth
Edmonds, Kearstin
Cifuentes-Munoz, Nicolas
El Najjar, Farah
Ossandón, Conny
Roe, McKenna
Wu, Chao
Moncman, Carole L.
Creamer, Trevor P.
Amarasinghe, Gaya K.
Leung, Daisy W.
Dutch, Rebecca Ellis
Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title_full Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title_fullStr Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title_full_unstemmed Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title_short Human Metapneumovirus Phosphoprotein Independently Drives Phase Separation and Recruits Nucleoprotein to Liquid-Like Bodies
title_sort human metapneumovirus phosphoprotein independently drives phase separation and recruits nucleoprotein to liquid-like bodies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239117/
https://www.ncbi.nlm.nih.gov/pubmed/35536005
http://dx.doi.org/10.1128/mbio.01099-22
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