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Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase

There is a growing body of evidence suggesting that some ribonucleoside/ribonucleotide analogs may be incorporated into mitochondrial RNA by human mitochondrial DNA-dependent RNA polymerase (POLRMT) and disrupt mitochondrial RNA synthesis. An assessment of the incorporation efficiency of a ribonucle...

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Autores principales: Lu, Gaofei, Bluemling, Gregory R., Mao, Shuli, Hager, Michael, Gurale, Bharat P., Collop, Paul, Kuiper, Damien, Sana, Kasinath, Painter, George R., De La Rosa, Abel, Kolykhalov, Alexander A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5786792/
https://www.ncbi.nlm.nih.gov/pubmed/29180528
http://dx.doi.org/10.1128/AAC.01830-17
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author Lu, Gaofei
Bluemling, Gregory R.
Mao, Shuli
Hager, Michael
Gurale, Bharat P.
Collop, Paul
Kuiper, Damien
Sana, Kasinath
Painter, George R.
De La Rosa, Abel
Kolykhalov, Alexander A.
author_facet Lu, Gaofei
Bluemling, Gregory R.
Mao, Shuli
Hager, Michael
Gurale, Bharat P.
Collop, Paul
Kuiper, Damien
Sana, Kasinath
Painter, George R.
De La Rosa, Abel
Kolykhalov, Alexander A.
author_sort Lu, Gaofei
collection PubMed
description There is a growing body of evidence suggesting that some ribonucleoside/ribonucleotide analogs may be incorporated into mitochondrial RNA by human mitochondrial DNA-dependent RNA polymerase (POLRMT) and disrupt mitochondrial RNA synthesis. An assessment of the incorporation efficiency of a ribonucleotide analog 5′-triphosphate by POLRMT may be used to evaluate the potential mitochondrial toxicity of the analog early in the development process. In this report, we provide a simple method to prepare active recombinant POLRMT. A robust in vitro nonradioactive primer extension assay was developed to assay the incorporation efficiency of ribonucleotide analog 5′-triphosphates. Our results show that many ribonucleotide analogs, including some antiviral compounds currently in various preclinical or clinical development stages, can be incorporated into newly synthesized RNA by POLRMT and that the incorporation of some of them can lead to chain termination. The discrimination (D) values of ribonucleotide analog 5′-triphosphates over those of natural ribonucleotide triphosphates (rNTPs) were measured to evaluate the incorporation efficiency of the ribonucleotide analog 5′-triphosphates by POLRMT. The discrimination values of natural rNTPs under the condition of misincorporation by POLRMT were used as a reference to evaluate the potential mitochondrial toxicity of ribonucleotide analogs. We propose the following criteria for the potential mitochondrial toxicity of ribonucleotide analogs based on D values: a safe compound has a D value of >10(5); a potentially toxic compound has a D value of >10(4) but <10(5); and a toxic compound has a D value of <10(4). This report provides a simple screening method that should assist investigators in designing ribonucleoside-based drugs having lower mitochondrial toxicity.
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spelling pubmed-57867922018-02-07 Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase Lu, Gaofei Bluemling, Gregory R. Mao, Shuli Hager, Michael Gurale, Bharat P. Collop, Paul Kuiper, Damien Sana, Kasinath Painter, George R. De La Rosa, Abel Kolykhalov, Alexander A. Antimicrob Agents Chemother Antiviral Agents There is a growing body of evidence suggesting that some ribonucleoside/ribonucleotide analogs may be incorporated into mitochondrial RNA by human mitochondrial DNA-dependent RNA polymerase (POLRMT) and disrupt mitochondrial RNA synthesis. An assessment of the incorporation efficiency of a ribonucleotide analog 5′-triphosphate by POLRMT may be used to evaluate the potential mitochondrial toxicity of the analog early in the development process. In this report, we provide a simple method to prepare active recombinant POLRMT. A robust in vitro nonradioactive primer extension assay was developed to assay the incorporation efficiency of ribonucleotide analog 5′-triphosphates. Our results show that many ribonucleotide analogs, including some antiviral compounds currently in various preclinical or clinical development stages, can be incorporated into newly synthesized RNA by POLRMT and that the incorporation of some of them can lead to chain termination. The discrimination (D) values of ribonucleotide analog 5′-triphosphates over those of natural ribonucleotide triphosphates (rNTPs) were measured to evaluate the incorporation efficiency of the ribonucleotide analog 5′-triphosphates by POLRMT. The discrimination values of natural rNTPs under the condition of misincorporation by POLRMT were used as a reference to evaluate the potential mitochondrial toxicity of ribonucleotide analogs. We propose the following criteria for the potential mitochondrial toxicity of ribonucleotide analogs based on D values: a safe compound has a D value of >10(5); a potentially toxic compound has a D value of >10(4) but <10(5); and a toxic compound has a D value of <10(4). This report provides a simple screening method that should assist investigators in designing ribonucleoside-based drugs having lower mitochondrial toxicity. American Society for Microbiology 2018-01-25 /pmc/articles/PMC5786792/ /pubmed/29180528 http://dx.doi.org/10.1128/AAC.01830-17 Text en Copyright © 2018 Lu et al. https://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 (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Antiviral Agents
Lu, Gaofei
Bluemling, Gregory R.
Mao, Shuli
Hager, Michael
Gurale, Bharat P.
Collop, Paul
Kuiper, Damien
Sana, Kasinath
Painter, George R.
De La Rosa, Abel
Kolykhalov, Alexander A.
Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title_full Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title_fullStr Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title_full_unstemmed Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title_short Simple In Vitro Assay To Evaluate the Incorporation Efficiency of Ribonucleotide Analog 5′-Triphosphates into RNA by Human Mitochondrial DNA-Dependent RNA Polymerase
title_sort simple in vitro assay to evaluate the incorporation efficiency of ribonucleotide analog 5′-triphosphates into rna by human mitochondrial dna-dependent rna polymerase
topic Antiviral Agents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5786792/
https://www.ncbi.nlm.nih.gov/pubmed/29180528
http://dx.doi.org/10.1128/AAC.01830-17
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