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Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus

Toxicity has emerged during the clinical development of many but not all nucleotide inhibitors (NI) of hepatitis C virus (HCV). To better understand the mechanism for adverse events, clinically relevant HCV NI were characterized in biochemical and cellular assays, including assays of decreased viabi...

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Autores principales: Feng, Joy Y., Xu, Yili, Barauskas, Ona, Perry, Jason K., Ahmadyar, Shekeba, Stepan, George, Yu, Helen, Babusis, Darius, Park, Yeojin, McCutcheon, Krista, Perron, Michel, Schultz, Brian E., Sakowicz, Roman, Ray, Adrian S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4750701/
https://www.ncbi.nlm.nih.gov/pubmed/26596942
http://dx.doi.org/10.1128/AAC.01922-15
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author Feng, Joy Y.
Xu, Yili
Barauskas, Ona
Perry, Jason K.
Ahmadyar, Shekeba
Stepan, George
Yu, Helen
Babusis, Darius
Park, Yeojin
McCutcheon, Krista
Perron, Michel
Schultz, Brian E.
Sakowicz, Roman
Ray, Adrian S.
author_facet Feng, Joy Y.
Xu, Yili
Barauskas, Ona
Perry, Jason K.
Ahmadyar, Shekeba
Stepan, George
Yu, Helen
Babusis, Darius
Park, Yeojin
McCutcheon, Krista
Perron, Michel
Schultz, Brian E.
Sakowicz, Roman
Ray, Adrian S.
author_sort Feng, Joy Y.
collection PubMed
description Toxicity has emerged during the clinical development of many but not all nucleotide inhibitors (NI) of hepatitis C virus (HCV). To better understand the mechanism for adverse events, clinically relevant HCV NI were characterized in biochemical and cellular assays, including assays of decreased viability in multiple cell lines and primary cells, interaction with human DNA and RNA polymerases, and inhibition of mitochondrial protein synthesis and respiration. NI that were incorporated by the mitochondrial RNA polymerase (PolRMT) inhibited mitochondrial protein synthesis and showed a corresponding decrease in mitochondrial oxygen consumption in cells. The nucleoside released by the prodrug balapiravir (R1626), 4′-azido cytidine, was a highly selective inhibitor of mitochondrial RNA transcription. The nucleotide prodrug of 2′-C-methyl guanosine, BMS-986094, showed a primary effect on mitochondrial function at submicromolar concentrations, followed by general cytotoxicity. In contrast, NI containing multiple ribose modifications, including the active forms of mericitabine and sofosbuvir, were poor substrates for PolRMT and did not show mitochondrial toxicity in cells. In general, these studies identified the prostate cell line PC-3 as more than an order of magnitude more sensitive to mitochondrial toxicity than the commonly used HepG2 cells. In conclusion, analogous to the role of mitochondrial DNA polymerase gamma in toxicity caused by some 2′-deoxynucleotide analogs, there is an association between HCV NI that interact with PolRMT and the observation of adverse events. More broadly applied, the sensitive methods for detecting mitochondrial toxicity described here may help in the identification of mitochondrial toxicity prior to clinical testing.
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spelling pubmed-47507012016-02-13 Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus Feng, Joy Y. Xu, Yili Barauskas, Ona Perry, Jason K. Ahmadyar, Shekeba Stepan, George Yu, Helen Babusis, Darius Park, Yeojin McCutcheon, Krista Perron, Michel Schultz, Brian E. Sakowicz, Roman Ray, Adrian S. Antimicrob Agents Chemother Antiviral Agents Toxicity has emerged during the clinical development of many but not all nucleotide inhibitors (NI) of hepatitis C virus (HCV). To better understand the mechanism for adverse events, clinically relevant HCV NI were characterized in biochemical and cellular assays, including assays of decreased viability in multiple cell lines and primary cells, interaction with human DNA and RNA polymerases, and inhibition of mitochondrial protein synthesis and respiration. NI that were incorporated by the mitochondrial RNA polymerase (PolRMT) inhibited mitochondrial protein synthesis and showed a corresponding decrease in mitochondrial oxygen consumption in cells. The nucleoside released by the prodrug balapiravir (R1626), 4′-azido cytidine, was a highly selective inhibitor of mitochondrial RNA transcription. The nucleotide prodrug of 2′-C-methyl guanosine, BMS-986094, showed a primary effect on mitochondrial function at submicromolar concentrations, followed by general cytotoxicity. In contrast, NI containing multiple ribose modifications, including the active forms of mericitabine and sofosbuvir, were poor substrates for PolRMT and did not show mitochondrial toxicity in cells. In general, these studies identified the prostate cell line PC-3 as more than an order of magnitude more sensitive to mitochondrial toxicity than the commonly used HepG2 cells. In conclusion, analogous to the role of mitochondrial DNA polymerase gamma in toxicity caused by some 2′-deoxynucleotide analogs, there is an association between HCV NI that interact with PolRMT and the observation of adverse events. More broadly applied, the sensitive methods for detecting mitochondrial toxicity described here may help in the identification of mitochondrial toxicity prior to clinical testing. American Society for Microbiology 2016-01-29 /pmc/articles/PMC4750701/ /pubmed/26596942 http://dx.doi.org/10.1128/AAC.01922-15 Text en Copyright © 2016 Feng et al. http://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 (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Antiviral Agents
Feng, Joy Y.
Xu, Yili
Barauskas, Ona
Perry, Jason K.
Ahmadyar, Shekeba
Stepan, George
Yu, Helen
Babusis, Darius
Park, Yeojin
McCutcheon, Krista
Perron, Michel
Schultz, Brian E.
Sakowicz, Roman
Ray, Adrian S.
Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title_full Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title_fullStr Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title_full_unstemmed Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title_short Role of Mitochondrial RNA Polymerase in the Toxicity of Nucleotide Inhibitors of Hepatitis C Virus
title_sort role of mitochondrial rna polymerase in the toxicity of nucleotide inhibitors of hepatitis c virus
topic Antiviral Agents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4750701/
https://www.ncbi.nlm.nih.gov/pubmed/26596942
http://dx.doi.org/10.1128/AAC.01922-15
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