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Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury

Systems biology offers considerable promise in uncovering novel pathways by which viruses and other microbial pathogens interact with host signaling and expression networks to mediate disease severity. In this study, we have developed an unbiased modeling approach to identify new pathways and networ...

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Autores principales: Gralinski, Lisa E., Bankhead, Armand, Jeng, Sophia, Menachery, Vineet D., Proll, Sean, Belisle, Sarah E., Matzke, Melissa, Webb-Robertson, Bobbie-Jo M., Luna, Maria L., Shukla, Anil K., Ferris, Martin T., Bolles, Meagan, Chang, Jean, Aicher, Lauri, Waters, Katrina M., Smith, Richard D., Metz, Thomas O., Law, G. Lynn, Katze, Michael G., McWeeney, Shannon, Baric, Ralph S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Microbiology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747576/
https://www.ncbi.nlm.nih.gov/pubmed/23919993
http://dx.doi.org/10.1128/mBio.00271-13
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author Gralinski, Lisa E.
Bankhead, Armand
Jeng, Sophia
Menachery, Vineet D.
Proll, Sean
Belisle, Sarah E.
Matzke, Melissa
Webb-Robertson, Bobbie-Jo M.
Luna, Maria L.
Shukla, Anil K.
Ferris, Martin T.
Bolles, Meagan
Chang, Jean
Aicher, Lauri
Waters, Katrina M.
Smith, Richard D.
Metz, Thomas O.
Law, G. Lynn
Katze, Michael G.
McWeeney, Shannon
Baric, Ralph S.
author_facet Gralinski, Lisa E.
Bankhead, Armand
Jeng, Sophia
Menachery, Vineet D.
Proll, Sean
Belisle, Sarah E.
Matzke, Melissa
Webb-Robertson, Bobbie-Jo M.
Luna, Maria L.
Shukla, Anil K.
Ferris, Martin T.
Bolles, Meagan
Chang, Jean
Aicher, Lauri
Waters, Katrina M.
Smith, Richard D.
Metz, Thomas O.
Law, G. Lynn
Katze, Michael G.
McWeeney, Shannon
Baric, Ralph S.
author_sort Gralinski, Lisa E.
collection PubMed
description Systems biology offers considerable promise in uncovering novel pathways by which viruses and other microbial pathogens interact with host signaling and expression networks to mediate disease severity. In this study, we have developed an unbiased modeling approach to identify new pathways and network connections mediating acute lung injury, using severe acute respiratory syndrome coronavirus (SARS-CoV) as a model pathogen. We utilized a time course of matched virologic, pathological, and transcriptomic data within a novel methodological framework that can detect pathway enrichment among key highly connected network genes. This unbiased approach produced a high-priority list of 4 genes in one pathway out of over 3,500 genes that were differentially expressed following SARS-CoV infection. With these data, we predicted that the urokinase and other wound repair pathways would regulate lethal versus sublethal disease following SARS-CoV infection in mice. We validated the importance of the urokinase pathway for SARS-CoV disease severity using genetically defined knockout mice, proteomic correlates of pathway activation, and pathological disease severity. The results of these studies demonstrate that a fine balance exists between host coagulation and fibrinolysin pathways regulating pathological disease outcomes, including diffuse alveolar damage and acute lung injury, following infection with highly pathogenic respiratory viruses, such as SARS-CoV.
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spelling pubmed-37475762013-08-23 Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury Gralinski, Lisa E. Bankhead, Armand Jeng, Sophia Menachery, Vineet D. Proll, Sean Belisle, Sarah E. Matzke, Melissa Webb-Robertson, Bobbie-Jo M. Luna, Maria L. Shukla, Anil K. Ferris, Martin T. Bolles, Meagan Chang, Jean Aicher, Lauri Waters, Katrina M. Smith, Richard D. Metz, Thomas O. Law, G. Lynn Katze, Michael G. McWeeney, Shannon Baric, Ralph S. mBio Research Article Systems biology offers considerable promise in uncovering novel pathways by which viruses and other microbial pathogens interact with host signaling and expression networks to mediate disease severity. In this study, we have developed an unbiased modeling approach to identify new pathways and network connections mediating acute lung injury, using severe acute respiratory syndrome coronavirus (SARS-CoV) as a model pathogen. We utilized a time course of matched virologic, pathological, and transcriptomic data within a novel methodological framework that can detect pathway enrichment among key highly connected network genes. This unbiased approach produced a high-priority list of 4 genes in one pathway out of over 3,500 genes that were differentially expressed following SARS-CoV infection. With these data, we predicted that the urokinase and other wound repair pathways would regulate lethal versus sublethal disease following SARS-CoV infection in mice. We validated the importance of the urokinase pathway for SARS-CoV disease severity using genetically defined knockout mice, proteomic correlates of pathway activation, and pathological disease severity. The results of these studies demonstrate that a fine balance exists between host coagulation and fibrinolysin pathways regulating pathological disease outcomes, including diffuse alveolar damage and acute lung injury, following infection with highly pathogenic respiratory viruses, such as SARS-CoV. American Society of Microbiology 2013-08-06 /pmc/articles/PMC3747576/ /pubmed/23919993 http://dx.doi.org/10.1128/mBio.00271-13 Text en Copyright © 2013 Gralinski et al. http://creativecommons.org/licenses/by-nc-sa/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-ShareAlike 3.0 Unported license (http://creativecommons.org/licenses/by-nc-sa/3.0/) , which permits unrestricted noncommercial use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gralinski, Lisa E.
Bankhead, Armand
Jeng, Sophia
Menachery, Vineet D.
Proll, Sean
Belisle, Sarah E.
Matzke, Melissa
Webb-Robertson, Bobbie-Jo M.
Luna, Maria L.
Shukla, Anil K.
Ferris, Martin T.
Bolles, Meagan
Chang, Jean
Aicher, Lauri
Waters, Katrina M.
Smith, Richard D.
Metz, Thomas O.
Law, G. Lynn
Katze, Michael G.
McWeeney, Shannon
Baric, Ralph S.
Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title_full Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title_fullStr Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title_full_unstemmed Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title_short Mechanisms of Severe Acute Respiratory Syndrome Coronavirus-Induced Acute Lung Injury
title_sort mechanisms of severe acute respiratory syndrome coronavirus-induced acute lung injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747576/
https://www.ncbi.nlm.nih.gov/pubmed/23919993
http://dx.doi.org/10.1128/mBio.00271-13
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