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Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells

Human respiratory syncytial virus (hRSV) is the leading cause of acute lower respiratory tract infections in children under five years of age and older adults worldwide. During hRSV infection, host cells undergo changes in endomembrane organelles, including mitochondria. This organelle is responsibl...

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Autores principales: Lara-Hernandez, Ignacio, Muñoz-Escalante, Juan Carlos, Bernal-Silva, Sofía, Noyola, Daniel E., Wong-Chew, Rosa María, Comas-García, Andreu, Comas-Garcia, Mauricio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386036/
https://www.ncbi.nlm.nih.gov/pubmed/37515204
http://dx.doi.org/10.3390/v15071518
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author Lara-Hernandez, Ignacio
Muñoz-Escalante, Juan Carlos
Bernal-Silva, Sofía
Noyola, Daniel E.
Wong-Chew, Rosa María
Comas-García, Andreu
Comas-Garcia, Mauricio
author_facet Lara-Hernandez, Ignacio
Muñoz-Escalante, Juan Carlos
Bernal-Silva, Sofía
Noyola, Daniel E.
Wong-Chew, Rosa María
Comas-García, Andreu
Comas-Garcia, Mauricio
author_sort Lara-Hernandez, Ignacio
collection PubMed
description Human respiratory syncytial virus (hRSV) is the leading cause of acute lower respiratory tract infections in children under five years of age and older adults worldwide. During hRSV infection, host cells undergo changes in endomembrane organelles, including mitochondria. This organelle is responsible for energy production in the cell and plays an important role in the antiviral response. The present study focuses on characterizing the ultrastructural and functional changes during hRSV infection using thin-section transmission electron microscopy and RT-qPCR. Here we report that hRSV infection alters mitochondrial morphodynamics by regulating the expression of key genes in the antiviral response process, such as Mfn1, VDAC2, and PINK1. Our results suggest that hRSV alters mitochondrial morphology during infection, producing a mitochondrial phenotype with shortened cristae, swollen matrix, and damaged membrane. We also observed that hRSV infection modulates the expression of the aforementioned genes, possibly as an evasion mechanism in the face of cellular antiviral response. Taken together, these results advance our knowledge of the ultrastructural alterations associated with hRSV infection and might guide future therapeutic efforts to develop effective antiviral drugs for hRSV treatment.
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spelling pubmed-103860362023-07-30 Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells Lara-Hernandez, Ignacio Muñoz-Escalante, Juan Carlos Bernal-Silva, Sofía Noyola, Daniel E. Wong-Chew, Rosa María Comas-García, Andreu Comas-Garcia, Mauricio Viruses Article Human respiratory syncytial virus (hRSV) is the leading cause of acute lower respiratory tract infections in children under five years of age and older adults worldwide. During hRSV infection, host cells undergo changes in endomembrane organelles, including mitochondria. This organelle is responsible for energy production in the cell and plays an important role in the antiviral response. The present study focuses on characterizing the ultrastructural and functional changes during hRSV infection using thin-section transmission electron microscopy and RT-qPCR. Here we report that hRSV infection alters mitochondrial morphodynamics by regulating the expression of key genes in the antiviral response process, such as Mfn1, VDAC2, and PINK1. Our results suggest that hRSV alters mitochondrial morphology during infection, producing a mitochondrial phenotype with shortened cristae, swollen matrix, and damaged membrane. We also observed that hRSV infection modulates the expression of the aforementioned genes, possibly as an evasion mechanism in the face of cellular antiviral response. Taken together, these results advance our knowledge of the ultrastructural alterations associated with hRSV infection and might guide future therapeutic efforts to develop effective antiviral drugs for hRSV treatment. MDPI 2023-07-07 /pmc/articles/PMC10386036/ /pubmed/37515204 http://dx.doi.org/10.3390/v15071518 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lara-Hernandez, Ignacio
Muñoz-Escalante, Juan Carlos
Bernal-Silva, Sofía
Noyola, Daniel E.
Wong-Chew, Rosa María
Comas-García, Andreu
Comas-Garcia, Mauricio
Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title_full Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title_fullStr Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title_full_unstemmed Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title_short Ultrastructural and Functional Characterization of Mitochondrial Dynamics Induced by Human Respiratory Syncytial Virus Infection in HEp-2 Cells
title_sort ultrastructural and functional characterization of mitochondrial dynamics induced by human respiratory syncytial virus infection in hep-2 cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386036/
https://www.ncbi.nlm.nih.gov/pubmed/37515204
http://dx.doi.org/10.3390/v15071518
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