Age-Related Accumulation of Somatic Mitochondrial DNA Mutations in Adult-Derived Human iPSCs
- PMID: 27151456
- DOI: 10.1016/j.stem.2016.02.005
Age-Related Accumulation of Somatic Mitochondrial DNA Mutations in Adult-Derived Human iPSCs
Abstract
The genetic integrity of iPSCs is an important consideration for therapeutic application. In this study, we examine the accumulation of somatic mitochondrial genome (mtDNA) mutations in skin fibroblasts, blood, and iPSCs derived from young and elderly subjects (24-72 years). We found that pooled skin and blood mtDNA contained low heteroplasmic point mutations, but a panel of ten individual iPSC lines from each tissue or clonally expanded fibroblasts carried an elevated load of heteroplasmic or homoplasmic mutations, suggesting that somatic mutations randomly arise within individual cells but are not detectable in whole tissues. The frequency of mtDNA defects in iPSCs increased with age, and many mutations were non-synonymous or resided in RNA coding genes and thus can lead to respiratory defects. Our results highlight a need to monitor mtDNA mutations in iPSCs, especially those generated from older patients, and to examine the metabolic status of iPSCs destined for clinical applications.
Copyright © 2016 Elsevier Inc. All rights reserved.
Comment in
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Mitochondrial DNA mutations in iPS cells: mtDNA integrity as standard iPSC selection criteria?EMBO J. 2016 Sep 15;35(18):1960-2. doi: 10.15252/embj.201695185. Epub 2016 Jul 28. EMBO J. 2016. PMID: 27469999 Free PMC article.
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Aging vs. rejuvenation: reprogramming to iPSCs does not turn back the clock for somatic mitochondrial DNA mutations.Stem Cell Investig. 2016 Sep 1;3:43. doi: 10.21037/sci.2016.08.09. eCollection 2016. Stem Cell Investig. 2016. PMID: 27668250 Free PMC article. No abstract available.
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