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Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target

The pathogenesis and host-viral interactions of the Crimean–Congo hemorrhagic fever orthonairovirus (CCHFV) are convoluted and not well evaluated. Application of the multi-omics system biology approaches, including biological network analysis in elucidating the complex host-viral response, interroga...

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Autores principales: Neogi, Ujjwal, Elaldi, Nazif, Appelberg, Sofia, Ambikan, Anoop, Kennedy, Emma, Dowall, Stuart, Bagci, Binnur K, Gupta, Soham, Rodriguez, Jimmy E, Svensson-Akusjärvi, Sara, Monteil, Vanessa, Vegvari, Akos, Benfeitas, Rui, Banerjea, Akhil, Weber, Friedemann, Hewson, Roger, Mirazimi, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018070/
https://www.ncbi.nlm.nih.gov/pubmed/35437144
http://dx.doi.org/10.7554/eLife.76071
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author Neogi, Ujjwal
Elaldi, Nazif
Appelberg, Sofia
Ambikan, Anoop
Kennedy, Emma
Dowall, Stuart
Bagci, Binnur K
Gupta, Soham
Rodriguez, Jimmy E
Svensson-Akusjärvi, Sara
Monteil, Vanessa
Vegvari, Akos
Benfeitas, Rui
Banerjea, Akhil
Weber, Friedemann
Hewson, Roger
Mirazimi, Ali
author_facet Neogi, Ujjwal
Elaldi, Nazif
Appelberg, Sofia
Ambikan, Anoop
Kennedy, Emma
Dowall, Stuart
Bagci, Binnur K
Gupta, Soham
Rodriguez, Jimmy E
Svensson-Akusjärvi, Sara
Monteil, Vanessa
Vegvari, Akos
Benfeitas, Rui
Banerjea, Akhil
Weber, Friedemann
Hewson, Roger
Mirazimi, Ali
author_sort Neogi, Ujjwal
collection PubMed
description The pathogenesis and host-viral interactions of the Crimean–Congo hemorrhagic fever orthonairovirus (CCHFV) are convoluted and not well evaluated. Application of the multi-omics system biology approaches, including biological network analysis in elucidating the complex host-viral response, interrogates the viral pathogenesis. The present study aimed to fingerprint the system-level alterations during acute CCHFV-infection and the cellular immune responses during productive CCHFV-replication in vitro. We used system-wide network-based system biology analysis of peripheral blood mononuclear cells (PBMCs) from a longitudinal cohort of CCHF patients during the acute phase of infection and after one year of recovery (convalescent phase) followed by untargeted quantitative proteomics analysis of the most permissive CCHFV-infected Huh7 and SW13 cells. In the RNAseq analysis of the PBMCs, comparing the acute and convalescent-phase, we observed system-level host’s metabolic reprogramming towards central carbon and energy metabolism (CCEM) with distinct upregulation of oxidative phosphorylation (OXPHOS) during CCHFV-infection. Upon application of network-based system biology methods, negative coordination of the biological signaling systems like FOXO/Notch axis and Akt/mTOR/HIF-1 signaling with metabolic pathways during CCHFV-infection were observed. The temporal quantitative proteomics in Huh7 showed a dynamic change in the CCEM over time and concordant with the cross-sectional proteomics in SW13 cells. By blocking the two key CCEM pathways, glycolysis and glutaminolysis, viral replication was inhibited in vitro. Activation of key interferon stimulating genes during infection suggested the role of type I and II interferon-mediated antiviral mechanisms both at the system level and during progressive replication.
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spelling pubmed-90180702022-04-20 Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target Neogi, Ujjwal Elaldi, Nazif Appelberg, Sofia Ambikan, Anoop Kennedy, Emma Dowall, Stuart Bagci, Binnur K Gupta, Soham Rodriguez, Jimmy E Svensson-Akusjärvi, Sara Monteil, Vanessa Vegvari, Akos Benfeitas, Rui Banerjea, Akhil Weber, Friedemann Hewson, Roger Mirazimi, Ali eLife Immunology and Inflammation The pathogenesis and host-viral interactions of the Crimean–Congo hemorrhagic fever orthonairovirus (CCHFV) are convoluted and not well evaluated. Application of the multi-omics system biology approaches, including biological network analysis in elucidating the complex host-viral response, interrogates the viral pathogenesis. The present study aimed to fingerprint the system-level alterations during acute CCHFV-infection and the cellular immune responses during productive CCHFV-replication in vitro. We used system-wide network-based system biology analysis of peripheral blood mononuclear cells (PBMCs) from a longitudinal cohort of CCHF patients during the acute phase of infection and after one year of recovery (convalescent phase) followed by untargeted quantitative proteomics analysis of the most permissive CCHFV-infected Huh7 and SW13 cells. In the RNAseq analysis of the PBMCs, comparing the acute and convalescent-phase, we observed system-level host’s metabolic reprogramming towards central carbon and energy metabolism (CCEM) with distinct upregulation of oxidative phosphorylation (OXPHOS) during CCHFV-infection. Upon application of network-based system biology methods, negative coordination of the biological signaling systems like FOXO/Notch axis and Akt/mTOR/HIF-1 signaling with metabolic pathways during CCHFV-infection were observed. The temporal quantitative proteomics in Huh7 showed a dynamic change in the CCEM over time and concordant with the cross-sectional proteomics in SW13 cells. By blocking the two key CCEM pathways, glycolysis and glutaminolysis, viral replication was inhibited in vitro. Activation of key interferon stimulating genes during infection suggested the role of type I and II interferon-mediated antiviral mechanisms both at the system level and during progressive replication. eLife Sciences Publications, Ltd 2022-04-19 /pmc/articles/PMC9018070/ /pubmed/35437144 http://dx.doi.org/10.7554/eLife.76071 Text en © 2022, Neogi et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Immunology and Inflammation
Neogi, Ujjwal
Elaldi, Nazif
Appelberg, Sofia
Ambikan, Anoop
Kennedy, Emma
Dowall, Stuart
Bagci, Binnur K
Gupta, Soham
Rodriguez, Jimmy E
Svensson-Akusjärvi, Sara
Monteil, Vanessa
Vegvari, Akos
Benfeitas, Rui
Banerjea, Akhil
Weber, Friedemann
Hewson, Roger
Mirazimi, Ali
Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title_full Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title_fullStr Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title_full_unstemmed Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title_short Multi-omics insights into host-viral response and pathogenesis in Crimean-Congo hemorrhagic fever viruses for novel therapeutic target
title_sort multi-omics insights into host-viral response and pathogenesis in crimean-congo hemorrhagic fever viruses for novel therapeutic target
topic Immunology and Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018070/
https://www.ncbi.nlm.nih.gov/pubmed/35437144
http://dx.doi.org/10.7554/eLife.76071
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