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The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging

Accumulation of somatic mutations in the mitochondrial genome (mtDNA) has long been proposed as a possible mechanism of mitochondrial and tissue dysfunction that occurs during aging. A thorough characterization of age-associated mtDNA somatic mutations has been hampered by the limited ability to det...

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Autores principales: Sanchez-Contreras, Monica, Sweetwyne, Mariya T, Tsantilas, Kristine A, Whitson, Jeremy A, Campbell, Matthew D, Kohrn, Brenden F, Kim, Hyeon Jeong, Hipp, Michael J, Fredrickson, Jeanne, Nguyen, Megan M, Hurley, James B, Marcinek, David J, Rabinovitch, Peter S, Kennedy, Scott R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10072880/
https://www.ncbi.nlm.nih.gov/pubmed/36799304
http://dx.doi.org/10.7554/eLife.83395
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author Sanchez-Contreras, Monica
Sweetwyne, Mariya T
Tsantilas, Kristine A
Whitson, Jeremy A
Campbell, Matthew D
Kohrn, Brenden F
Kim, Hyeon Jeong
Hipp, Michael J
Fredrickson, Jeanne
Nguyen, Megan M
Hurley, James B
Marcinek, David J
Rabinovitch, Peter S
Kennedy, Scott R
author_facet Sanchez-Contreras, Monica
Sweetwyne, Mariya T
Tsantilas, Kristine A
Whitson, Jeremy A
Campbell, Matthew D
Kohrn, Brenden F
Kim, Hyeon Jeong
Hipp, Michael J
Fredrickson, Jeanne
Nguyen, Megan M
Hurley, James B
Marcinek, David J
Rabinovitch, Peter S
Kennedy, Scott R
author_sort Sanchez-Contreras, Monica
collection PubMed
description Accumulation of somatic mutations in the mitochondrial genome (mtDNA) has long been proposed as a possible mechanism of mitochondrial and tissue dysfunction that occurs during aging. A thorough characterization of age-associated mtDNA somatic mutations has been hampered by the limited ability to detect low-frequency mutations. Here, we used Duplex Sequencing on eight tissues of an aged mouse cohort to detect >89,000 independent somatic mtDNA mutations and show significant tissue-specific increases during aging across all tissues examined which did not correlate with mitochondrial content and tissue function. G→A/C→T substitutions, indicative of replication errors and/or cytidine deamination, were the predominant mutation type across all tissues and increased with age, whereas G→T/C→A substitutions, indicative of oxidative damage, were the second most common mutation type, but did not increase with age regardless of tissue. We also show that clonal expansions of mtDNA mutations with age is tissue- and mutation type-dependent. Unexpectedly, mutations associated with oxidative damage rarely formed clones in any tissue and were significantly reduced in the hearts and kidneys of aged mice treated at late age with elamipretide or nicotinamide mononucleotide. Thus, the lack of accumulation of oxidative damage-linked mutations with age suggests a life-long dynamic clearance of either the oxidative lesions or mtDNA genomes harboring oxidative damage.
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spelling pubmed-100728802023-04-05 The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging Sanchez-Contreras, Monica Sweetwyne, Mariya T Tsantilas, Kristine A Whitson, Jeremy A Campbell, Matthew D Kohrn, Brenden F Kim, Hyeon Jeong Hipp, Michael J Fredrickson, Jeanne Nguyen, Megan M Hurley, James B Marcinek, David J Rabinovitch, Peter S Kennedy, Scott R eLife Genetics and Genomics Accumulation of somatic mutations in the mitochondrial genome (mtDNA) has long been proposed as a possible mechanism of mitochondrial and tissue dysfunction that occurs during aging. A thorough characterization of age-associated mtDNA somatic mutations has been hampered by the limited ability to detect low-frequency mutations. Here, we used Duplex Sequencing on eight tissues of an aged mouse cohort to detect >89,000 independent somatic mtDNA mutations and show significant tissue-specific increases during aging across all tissues examined which did not correlate with mitochondrial content and tissue function. G→A/C→T substitutions, indicative of replication errors and/or cytidine deamination, were the predominant mutation type across all tissues and increased with age, whereas G→T/C→A substitutions, indicative of oxidative damage, were the second most common mutation type, but did not increase with age regardless of tissue. We also show that clonal expansions of mtDNA mutations with age is tissue- and mutation type-dependent. Unexpectedly, mutations associated with oxidative damage rarely formed clones in any tissue and were significantly reduced in the hearts and kidneys of aged mice treated at late age with elamipretide or nicotinamide mononucleotide. Thus, the lack of accumulation of oxidative damage-linked mutations with age suggests a life-long dynamic clearance of either the oxidative lesions or mtDNA genomes harboring oxidative damage. eLife Sciences Publications, Ltd 2023-02-17 /pmc/articles/PMC10072880/ /pubmed/36799304 http://dx.doi.org/10.7554/eLife.83395 Text en © 2023, Sanchez-Contreras, Sweetwyne 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 Genetics and Genomics
Sanchez-Contreras, Monica
Sweetwyne, Mariya T
Tsantilas, Kristine A
Whitson, Jeremy A
Campbell, Matthew D
Kohrn, Brenden F
Kim, Hyeon Jeong
Hipp, Michael J
Fredrickson, Jeanne
Nguyen, Megan M
Hurley, James B
Marcinek, David J
Rabinovitch, Peter S
Kennedy, Scott R
The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title_full The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title_fullStr The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title_full_unstemmed The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title_short The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
title_sort multi-tissue landscape of somatic mtdna mutations indicates tissue-specific accumulation and removal in aging
topic Genetics and Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10072880/
https://www.ncbi.nlm.nih.gov/pubmed/36799304
http://dx.doi.org/10.7554/eLife.83395
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