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Advanced age increases frequencies of de novo mitochondrial mutations in macaque oocytes and somatic tissues.
Arbeithuber, Barbara; Cremona, Marzia A; Hester, James; Barrett, Alison; Higgins, Bonnie; Anthony, Kate; Chiaromonte, Francesca; Diaz, Francisco J; Makova, Kateryna D.
Afiliación
  • Arbeithuber B; Department of Biology, The Pennsylvania State University, University Park, PA 16802.
  • Cremona MA; Experimental Gynaecology, Obstetrics and Gynaecological Endocrinology, Kepler University Hospital Linz, Johannes Kepler University Linz, 4020 Linz, Austria.
  • Hester J; Department of Operations and Decision Systems, Université Laval, Québec, QC G1V0A6, Canada.
  • Barrett A; Population Health and Optimal Health Practices, CHU de Québec - Université Laval Research Center, Québec, QC G1V4G2, Canada.
  • Higgins B; Center for Medical Genomics, The Pennsylvania State University, University Park, PA 16802.
  • Anthony K; Department of Animal Science, The Pennsylvania State University, University Park, PA 16802.
  • Chiaromonte F; Department of Biology, The Pennsylvania State University, University Park, PA 16802.
  • Diaz FJ; Department of Biology, The Pennsylvania State University, University Park, PA 16802.
  • Makova KD; Department of Biology, The Pennsylvania State University, University Park, PA 16802.
Proc Natl Acad Sci U S A ; 119(15): e2118740119, 2022 04 12.
Article en En | MEDLINE | ID: mdl-35394879
ABSTRACT
Mutations in mitochondrial DNA (mtDNA) contribute to multiple diseases. However, how new mtDNA mutations arise and accumulate with age remains understudied because of the high error rates of current sequencing technologies. Duplex sequencing reduces error rates by several orders of magnitude via independently tagging and analyzing each of the two template DNA strands. Here, using duplex sequencing, we obtained high-quality mtDNA sequences for somatic tissues (liver and skeletal muscle) and single oocytes of 30 unrelated rhesus macaques, from 1 to 23 y of age. Sequencing single oocytes minimized effects of natural selection on germline mutations. In total, we identified 17,637 tissue-specific de novo mutations. Their frequency increased ∼3.5-fold in liver and ∼2.8-fold in muscle over the ∼20 y assessed. Mutation frequency in oocytes increased ∼2.5-fold until the age of 9 y, but did not increase after that, suggesting that oocytes of older animals maintain the quality of their mtDNA. We found the light-strand origin of replication (OriL) to be a hotspot for mutation accumulation with aging in liver. Indeed, the 33-nucleotide-long OriL harbored 12 variant hotspots, 10 of which likely disrupt its hairpin structure and affect replication efficiency. Moreover, in somatic tissues, protein-coding variants were subject to positive selection (potentially mitigating toxic effects of mitochondrial activity), the strength of which increased with the number of macaques harboring variants. Our work illuminates the origins and accumulation of somatic and germline mtDNA mutations with aging in primates and has implications for delayed reproduction in modern human societies.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Oocitos / Envejecimiento / Mitocondrias / Mutación Límite: Animals / Humans Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Oocitos / Envejecimiento / Mitocondrias / Mutación Límite: Animals / Humans Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2022 Tipo del documento: Article