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A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data

Specific genetic variants in the mitochondrially encoded 12S ribosomal RNA gene (MT-RNR1) cause aminoglycoside-induced irreversible hearing loss. Mitochondrial DNA is usually not included in targeted sequencing experiments; however, off-target data may deliver this information. Here, we extract MT-R...

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Autores principales: Lanillos, Javier, Santos, María, Carcajona, Marta, Roldan-Romero, Juan María, Martinez, Angel M., Calsina, Bruna, Monteagudo, María, Leandro-García, Luis Javier, Montero-Conde, Cristina, Cascón, Alberto, Maietta, Paolo, Alvarez, Sara, Robledo, Mercedes, Rodriguez-Antona, Cristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408883/
https://www.ncbi.nlm.nih.gov/pubmed/32630724
http://dx.doi.org/10.3390/jcm9072082
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author Lanillos, Javier
Santos, María
Carcajona, Marta
Roldan-Romero, Juan María
Martinez, Angel M.
Calsina, Bruna
Monteagudo, María
Leandro-García, Luis Javier
Montero-Conde, Cristina
Cascón, Alberto
Maietta, Paolo
Alvarez, Sara
Robledo, Mercedes
Rodriguez-Antona, Cristina
author_facet Lanillos, Javier
Santos, María
Carcajona, Marta
Roldan-Romero, Juan María
Martinez, Angel M.
Calsina, Bruna
Monteagudo, María
Leandro-García, Luis Javier
Montero-Conde, Cristina
Cascón, Alberto
Maietta, Paolo
Alvarez, Sara
Robledo, Mercedes
Rodriguez-Antona, Cristina
author_sort Lanillos, Javier
collection PubMed
description Specific genetic variants in the mitochondrially encoded 12S ribosomal RNA gene (MT-RNR1) cause aminoglycoside-induced irreversible hearing loss. Mitochondrial DNA is usually not included in targeted sequencing experiments; however, off-target data may deliver this information. Here, we extract MT-RNR1 genetic variation, including the most relevant ototoxicity variant m.1555A>G, using the off-target reads of 473 research samples, sequenced through a capture-based, custom-targeted panel and whole exome sequencing (WES), and of 1245 diagnostic samples with clinical WES. Sanger sequencing and fluorescence-based genotyping were used for genotype validation. There was a correlation between off-target reads and mitochondrial coverage (r(customPanel) = 0.39, p = 2 × 10(−13) and rWES = 0.67, p = 7 × 10(−21)). The median read depth of MT-RNR1 m.1555 was similar to the average mitochondrial genome coverage, with saliva and blood samples giving comparable results. The genotypes from 415 samples, including three m.1555G carriers, were concordant with fluorescence-based genotyping data. In clinical WES, median MT-RNR1 coverage was 56×, with 90% of samples having ≥20 reads at m.1555 position, and one m.1494T and three m.1555G carriers were identified with no evidence for heteroplasmy. Altogether, this study shows that obtaining MT-RNR1 genotypes through off-target reads is an efficient strategy that can impulse preemptive pharmacogenetic screening of this mitochondrial gene.
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spelling pubmed-74088832020-08-13 A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data Lanillos, Javier Santos, María Carcajona, Marta Roldan-Romero, Juan María Martinez, Angel M. Calsina, Bruna Monteagudo, María Leandro-García, Luis Javier Montero-Conde, Cristina Cascón, Alberto Maietta, Paolo Alvarez, Sara Robledo, Mercedes Rodriguez-Antona, Cristina J Clin Med Article Specific genetic variants in the mitochondrially encoded 12S ribosomal RNA gene (MT-RNR1) cause aminoglycoside-induced irreversible hearing loss. Mitochondrial DNA is usually not included in targeted sequencing experiments; however, off-target data may deliver this information. Here, we extract MT-RNR1 genetic variation, including the most relevant ototoxicity variant m.1555A>G, using the off-target reads of 473 research samples, sequenced through a capture-based, custom-targeted panel and whole exome sequencing (WES), and of 1245 diagnostic samples with clinical WES. Sanger sequencing and fluorescence-based genotyping were used for genotype validation. There was a correlation between off-target reads and mitochondrial coverage (r(customPanel) = 0.39, p = 2 × 10(−13) and rWES = 0.67, p = 7 × 10(−21)). The median read depth of MT-RNR1 m.1555 was similar to the average mitochondrial genome coverage, with saliva and blood samples giving comparable results. The genotypes from 415 samples, including three m.1555G carriers, were concordant with fluorescence-based genotyping data. In clinical WES, median MT-RNR1 coverage was 56×, with 90% of samples having ≥20 reads at m.1555 position, and one m.1494T and three m.1555G carriers were identified with no evidence for heteroplasmy. Altogether, this study shows that obtaining MT-RNR1 genotypes through off-target reads is an efficient strategy that can impulse preemptive pharmacogenetic screening of this mitochondrial gene. MDPI 2020-07-02 /pmc/articles/PMC7408883/ /pubmed/32630724 http://dx.doi.org/10.3390/jcm9072082 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lanillos, Javier
Santos, María
Carcajona, Marta
Roldan-Romero, Juan María
Martinez, Angel M.
Calsina, Bruna
Monteagudo, María
Leandro-García, Luis Javier
Montero-Conde, Cristina
Cascón, Alberto
Maietta, Paolo
Alvarez, Sara
Robledo, Mercedes
Rodriguez-Antona, Cristina
A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title_full A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title_fullStr A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title_full_unstemmed A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title_short A Novel Approach for the Identification of Pharmacogenetic Variants in MT-RNR1 through Next-Generation Sequencing Off-Target Data
title_sort novel approach for the identification of pharmacogenetic variants in mt-rnr1 through next-generation sequencing off-target data
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408883/
https://www.ncbi.nlm.nih.gov/pubmed/32630724
http://dx.doi.org/10.3390/jcm9072082
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