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A mitochondria-specific mutational signature of aging: increased rate of A > G substitutions on the heavy strand

Authors :
Alina G Mikhailova
Alina A Mikhailova
Kristina Ushakova
Evgeny O Tretiakov
Dmitrii Iliushchenko
Victor Shamansky
Valeria Lobanova
Ivan Kozenkov
Bogdan Efimenko
Andrey A Yurchenko
Elena Kozenkova
Evgeny M Zdobnov
Vsevolod Makeev
Valerian Yurov
Masashi Tanaka
Irina Gostimskaya
Zoe Fleischmann
Sofia Annis
Melissa Franco
Kevin Wasko
Stepan Denisov
Wolfram S Kunz
Dmitry Knorre
Ilya Mazunin
Sergey Nikolaev
Jacques Fellay
Alexandre Reymond
Konstantin Khrapko
Konstantin Gunbin
Konstantin Popadin
Source :
Denisov, S 2022, ' A mitochondria-specific mutational signature of aging: increased rate of A > G substitutions on the heavy strand ', Nucleic acids research, vol. 50, pp. 10264–10277 . https://doi.org/10.1093/nar/gkac779
Publication Year :
2022

Abstract

The mutational spectrum of the mitochondrial DNA (mtDNA) does not resemble any of the known mutational signatures of the nuclear genome and variation in mtDNA mutational spectra between different organisms is still incomprehensible. Since mitochondria are responsible for aerobic respiration, it is expected that mtDNA mutational spectrum is affected by oxidative damage. Assuming that oxidative damage increases with age, we analyse mtDNA mutagenesis of different species in regards to their generation length. Analysing, (i) dozens of thousands of somatic mtDNA mutations in samples of different ages (ii) 70053 polymorphic synonymous mtDNA substitutions reconstructed in 424 mammalian species with different generation lengths and (iii) synonymous nucleotide content of 650 complete mitochondrial genomes of mammalian species we observed that the frequency of AH > GH substitutions (H: heavy strand notation) is twice bigger in species with high versus low generation length making their mtDNA more AH poor and GH rich. Considering that AH > GH substitutions are also sensitive to the time spent single-stranded (TSSS) during asynchronous mtDNA replication we demonstrated that AH > GH substitution rate is a function of both species-specific generation length and position-specific TSSS. We propose that AH > GH is a mitochondria-specific signature of oxidative damage associated with both aging and TSSS.

Details

Language :
English
Database :
OpenAIRE
Journal :
Denisov, S 2022, ' A mitochondria-specific mutational signature of aging: increased rate of A > G substitutions on the heavy strand ', Nucleic acids research, vol. 50, pp. 10264–10277 . https://doi.org/10.1093/nar/gkac779
Accession number :
edsair.doi.dedup.....3aaf04f68180d9afc181527a26230b3c
Full Text :
https://doi.org/10.1093/nar/gkac779