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Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics

Proteomic and lipidomic profiling was performed over a time course of acute hepatitis C virus (HCV) infection in cultured Huh-7.5 cells to gain new insights into the intracellular processes influenced by this virus. Our proteomic data suggest that HCV induces early perturbations in glycolysis, the p...

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Autores principales: Diamond, Deborah L., Syder, Andrew J., Jacobs, Jon M., Sorensen, Christina M., Walters, Kathie-Anne, Proll, Sean C., McDermott, Jason E., Gritsenko, Marina A., Zhang, Qibin, Zhao, Rui, Metz, Thomas O., Camp, David G., Waters, Katrina M., Smith, Richard D., Rice, Charles M., Katze, Michael G.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2796172/
https://www.ncbi.nlm.nih.gov/pubmed/20062526
http://dx.doi.org/10.1371/journal.ppat.1000719
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author Diamond, Deborah L.
Syder, Andrew J.
Jacobs, Jon M.
Sorensen, Christina M.
Walters, Kathie-Anne
Proll, Sean C.
McDermott, Jason E.
Gritsenko, Marina A.
Zhang, Qibin
Zhao, Rui
Metz, Thomas O.
Camp, David G.
Waters, Katrina M.
Smith, Richard D.
Rice, Charles M.
Katze, Michael G.
author_facet Diamond, Deborah L.
Syder, Andrew J.
Jacobs, Jon M.
Sorensen, Christina M.
Walters, Kathie-Anne
Proll, Sean C.
McDermott, Jason E.
Gritsenko, Marina A.
Zhang, Qibin
Zhao, Rui
Metz, Thomas O.
Camp, David G.
Waters, Katrina M.
Smith, Richard D.
Rice, Charles M.
Katze, Michael G.
author_sort Diamond, Deborah L.
collection PubMed
description Proteomic and lipidomic profiling was performed over a time course of acute hepatitis C virus (HCV) infection in cultured Huh-7.5 cells to gain new insights into the intracellular processes influenced by this virus. Our proteomic data suggest that HCV induces early perturbations in glycolysis, the pentose phosphate pathway, and the citric acid cycle, which favor host biosynthetic activities supporting viral replication and propagation. This is followed by a compensatory shift in metabolism aimed at maintaining energy homeostasis and cell viability during elevated viral replication and increasing cellular stress. Complementary lipidomic analyses identified numerous temporal perturbations in select lipid species (e.g. phospholipids and sphingomyelins) predicted to play important roles in viral replication and downstream assembly and secretion events. The elevation of lipotoxic ceramide species suggests a potential link between HCV-associated biochemical alterations and the direct cytopathic effect observed in this in vitro system. Using innovative computational modeling approaches, we further identified mitochondrial fatty acid oxidation enzymes, which are comparably regulated during in vitro infection and in patients with histological evidence of fibrosis, as possible targets through which HCV regulates temporal alterations in cellular metabolic homeostasis.
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spelling pubmed-27961722010-01-09 Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics Diamond, Deborah L. Syder, Andrew J. Jacobs, Jon M. Sorensen, Christina M. Walters, Kathie-Anne Proll, Sean C. McDermott, Jason E. Gritsenko, Marina A. Zhang, Qibin Zhao, Rui Metz, Thomas O. Camp, David G. Waters, Katrina M. Smith, Richard D. Rice, Charles M. Katze, Michael G. PLoS Pathog Research Article Proteomic and lipidomic profiling was performed over a time course of acute hepatitis C virus (HCV) infection in cultured Huh-7.5 cells to gain new insights into the intracellular processes influenced by this virus. Our proteomic data suggest that HCV induces early perturbations in glycolysis, the pentose phosphate pathway, and the citric acid cycle, which favor host biosynthetic activities supporting viral replication and propagation. This is followed by a compensatory shift in metabolism aimed at maintaining energy homeostasis and cell viability during elevated viral replication and increasing cellular stress. Complementary lipidomic analyses identified numerous temporal perturbations in select lipid species (e.g. phospholipids and sphingomyelins) predicted to play important roles in viral replication and downstream assembly and secretion events. The elevation of lipotoxic ceramide species suggests a potential link between HCV-associated biochemical alterations and the direct cytopathic effect observed in this in vitro system. Using innovative computational modeling approaches, we further identified mitochondrial fatty acid oxidation enzymes, which are comparably regulated during in vitro infection and in patients with histological evidence of fibrosis, as possible targets through which HCV regulates temporal alterations in cellular metabolic homeostasis. Public Library of Science 2010-01-08 /pmc/articles/PMC2796172/ /pubmed/20062526 http://dx.doi.org/10.1371/journal.ppat.1000719 Text en Diamond et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Diamond, Deborah L.
Syder, Andrew J.
Jacobs, Jon M.
Sorensen, Christina M.
Walters, Kathie-Anne
Proll, Sean C.
McDermott, Jason E.
Gritsenko, Marina A.
Zhang, Qibin
Zhao, Rui
Metz, Thomas O.
Camp, David G.
Waters, Katrina M.
Smith, Richard D.
Rice, Charles M.
Katze, Michael G.
Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title_full Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title_fullStr Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title_full_unstemmed Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title_short Temporal Proteome and Lipidome Profiles Reveal Hepatitis C Virus-Associated Reprogramming of Hepatocellular Metabolism and Bioenergetics
title_sort temporal proteome and lipidome profiles reveal hepatitis c virus-associated reprogramming of hepatocellular metabolism and bioenergetics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2796172/
https://www.ncbi.nlm.nih.gov/pubmed/20062526
http://dx.doi.org/10.1371/journal.ppat.1000719
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