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Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production

Human respiratory syncytial virus (HRSV) envelope glycoproteins traffic to assembly sites through the secretory pathway, while nonglycosylated proteins M and N are present in HRSV inclusion bodies but must reach the plasma membrane, where HRSV assembly happens. Little is known about how nonglycosyla...

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Autores principales: Cardoso, Ricardo S., Tavares, Lucas Alves, Jesus, Bruna Lais S., Criado, Miria F., de Carvalho, Andreia Nogueira, Souza, Juliano de Paula, Bedi, Sukhmani, de Souza, Marcos Michel, Silva, Maria Lucia, Lanfredi, Guilherme Pauperio, Vitti, Brenda Cristina, Scudero, Orlando Bonito, Faça, Vitor Marcel, Ono, Akira, Ventura, Armando M., daSilva, Luis Lamberti P., Arruda, Eurico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7527724/
https://www.ncbi.nlm.nih.gov/pubmed/32994321
http://dx.doi.org/10.1128/mBio.01869-20
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author Cardoso, Ricardo S.
Tavares, Lucas Alves
Jesus, Bruna Lais S.
Criado, Miria F.
de Carvalho, Andreia Nogueira
Souza, Juliano de Paula
Bedi, Sukhmani
de Souza, Marcos Michel
Silva, Maria Lucia
Lanfredi, Guilherme Pauperio
Vitti, Brenda Cristina
Scudero, Orlando Bonito
Faça, Vitor Marcel
Ono, Akira
Ventura, Armando M.
daSilva, Luis Lamberti P.
Arruda, Eurico
author_facet Cardoso, Ricardo S.
Tavares, Lucas Alves
Jesus, Bruna Lais S.
Criado, Miria F.
de Carvalho, Andreia Nogueira
Souza, Juliano de Paula
Bedi, Sukhmani
de Souza, Marcos Michel
Silva, Maria Lucia
Lanfredi, Guilherme Pauperio
Vitti, Brenda Cristina
Scudero, Orlando Bonito
Faça, Vitor Marcel
Ono, Akira
Ventura, Armando M.
daSilva, Luis Lamberti P.
Arruda, Eurico
author_sort Cardoso, Ricardo S.
collection PubMed
description Human respiratory syncytial virus (HRSV) envelope glycoproteins traffic to assembly sites through the secretory pathway, while nonglycosylated proteins M and N are present in HRSV inclusion bodies but must reach the plasma membrane, where HRSV assembly happens. Little is known about how nonglycosylated HRSV proteins reach assembly sites. Here, we show that HRSV M and N proteins partially colocalize with the Golgi marker giantin, and the glycosylated F and nonglycosylated N proteins are closely located in the trans-Golgi, suggesting their interaction in that compartment. Brefeldin A compromised the trafficking of HRSV F and N proteins and inclusion body sizes, indicating that the Golgi is important for both glycosylated and nonglycosylated HRSV protein traffic. HRSV N and M proteins colocalized and interacted with sorting nexin 2 (SNX2), a retromer component that shapes endosomes in tubular structures. Glycosylated F and nonglycosylated N HRSV proteins are detected in SNX2-laden aggregates with intracellular filaments projecting from their outer surfaces, and VPS26, another retromer component, was also found in inclusion bodies and filament-shaped structures. Similar to SNX2, TGN46 also colocalized with HRSV M and N proteins in filamentous structures at the plasma membrane. Cell fractionation showed enrichment of SNX2 in fractions containing HRSV M and N proteins. Silencing of SNX1 and 2 was associated with reduction in viral proteins, HRSV inclusion body size, syncytium formation, and progeny production. The results indicate that HRSV structural proteins M and N are in the secretory pathway, and SNX2 plays an important role in the traffic of HRSV structural proteins toward assembly sites.
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spelling pubmed-75277242020-10-19 Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production Cardoso, Ricardo S. Tavares, Lucas Alves Jesus, Bruna Lais S. Criado, Miria F. de Carvalho, Andreia Nogueira Souza, Juliano de Paula Bedi, Sukhmani de Souza, Marcos Michel Silva, Maria Lucia Lanfredi, Guilherme Pauperio Vitti, Brenda Cristina Scudero, Orlando Bonito Faça, Vitor Marcel Ono, Akira Ventura, Armando M. daSilva, Luis Lamberti P. Arruda, Eurico mBio Research Article Human respiratory syncytial virus (HRSV) envelope glycoproteins traffic to assembly sites through the secretory pathway, while nonglycosylated proteins M and N are present in HRSV inclusion bodies but must reach the plasma membrane, where HRSV assembly happens. Little is known about how nonglycosylated HRSV proteins reach assembly sites. Here, we show that HRSV M and N proteins partially colocalize with the Golgi marker giantin, and the glycosylated F and nonglycosylated N proteins are closely located in the trans-Golgi, suggesting their interaction in that compartment. Brefeldin A compromised the trafficking of HRSV F and N proteins and inclusion body sizes, indicating that the Golgi is important for both glycosylated and nonglycosylated HRSV protein traffic. HRSV N and M proteins colocalized and interacted with sorting nexin 2 (SNX2), a retromer component that shapes endosomes in tubular structures. Glycosylated F and nonglycosylated N HRSV proteins are detected in SNX2-laden aggregates with intracellular filaments projecting from their outer surfaces, and VPS26, another retromer component, was also found in inclusion bodies and filament-shaped structures. Similar to SNX2, TGN46 also colocalized with HRSV M and N proteins in filamentous structures at the plasma membrane. Cell fractionation showed enrichment of SNX2 in fractions containing HRSV M and N proteins. Silencing of SNX1 and 2 was associated with reduction in viral proteins, HRSV inclusion body size, syncytium formation, and progeny production. The results indicate that HRSV structural proteins M and N are in the secretory pathway, and SNX2 plays an important role in the traffic of HRSV structural proteins toward assembly sites. American Society for Microbiology 2020-09-29 /pmc/articles/PMC7527724/ /pubmed/32994321 http://dx.doi.org/10.1128/mBio.01869-20 Text en Copyright © 2020 Cardoso 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
Cardoso, Ricardo S.
Tavares, Lucas Alves
Jesus, Bruna Lais S.
Criado, Miria F.
de Carvalho, Andreia Nogueira
Souza, Juliano de Paula
Bedi, Sukhmani
de Souza, Marcos Michel
Silva, Maria Lucia
Lanfredi, Guilherme Pauperio
Vitti, Brenda Cristina
Scudero, Orlando Bonito
Faça, Vitor Marcel
Ono, Akira
Ventura, Armando M.
daSilva, Luis Lamberti P.
Arruda, Eurico
Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title_full Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title_fullStr Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title_full_unstemmed Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title_short Host Retromer Protein Sorting Nexin 2 Interacts with Human Respiratory Syncytial Virus Structural Proteins and is Required for Efficient Viral Production
title_sort host retromer protein sorting nexin 2 interacts with human respiratory syncytial virus structural proteins and is required for efficient viral production
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7527724/
https://www.ncbi.nlm.nih.gov/pubmed/32994321
http://dx.doi.org/10.1128/mBio.01869-20
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