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Age-related accumulation of de novo mitochondrial mutations in mammalian oocytes and somatic tissues
PLoS Biol. 2020 Jul 15;18(7):e3000745. doi: 10.1371/journal.pbio.3000745.
Barbara Arbeithuber 1, James Hester 2, Marzia A Cremona 3, Nicholas Stoler 4, Arslan Zaidi 1, Bonnie Higgins 1, Kate Anthony 1, Francesca Chiaromonte 3 5, Francisco J Diaz 2, Kateryna D Makova 1
Abstract:
...Here, we applied highly accurate duplex sequencing to detect low-frequency, de novo mutations in mitochondrial DNA (mtDNA) directly from oocytes and from somatic tissues (brain and muscle) of 36 mice from two independent pedigrees. We found mtDNA mutation frequencies 2- to 3-fold higher in 10-month-old than in 1-month-old mice, demonstrating mutation accumulation during the period of only 9 mo. Mutation frequencies and patterns differed between germline and somatic tissues and among mtDNA regions, suggestive of distinct mutagenesis mechanisms. Additionally, we discovered a more pronounced genetic drift of mitochondrial genetic variants in the germline of older versus younger mice, arguing for mtDNA turnover during oocyte meiotic arrest. Our study deciphered for the first time the intricacies of germline de novo mutagenesis using duplex sequencing directly in oocytes, which provided unprecedented resolution and minimized selection effects present in pedigree studies. Moreover, our work provides important information about the origins and accumulation of mutations with aging/maturation and has implications for delayed reproduction in modern human societies. Furthermore, the duplex sequencing method we optimized for single cells opens avenues for investigating low-frequency mutations in other studies.
PMID: 32667908
Free Full-Text: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7363077/