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Somatic mutagenesis in satellite cells associates with human skeletal muscle aging

Irene Franco, Anna Johansson, Karl Olsson, Peter Vrtačnik, Pär Lundin, Hafdís T. Helgadóttir, Malin Larsson, Gwladys Revêchon, Carla Bosia, Andrea Pagnani, Paolo Provero, Thomas Gustafsson, Heléne Fischer, Maria Eriksson

Nature Communications · 2018 · ▲ 122 citations

Abstract

Human aging is associated with a decline in skeletal muscle (SkM) function and a reduction in the number and activity of satellite cells (SCs), the resident stem cells. To study the connection between SC aging and muscle impairment, we analyze the whole genome of single SC clones of the leg muscle vastus lateralis from healthy individuals of different ages (21-78 years). We find an accumulation rate of 13 somatic mutations per genome per year, consistent with proliferation of SCs in the healthy adult muscle. SkM-expressed genes are protected from mutations, but aging results in an increase in mutations in exons and promoters, targeting genes involved in SC activity and muscle function. In agreement with SC mutations affecting the whole tissue, we detect a missense mutation in a SC propagating to the muscle. Our results suggest somatic mutagenesis in SCs as a driving force in the age-related decline of SkM function.

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OpenAlex
DOI
10.1038/s41467-018-03244-6
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2026-07-27 MST

Cite this

APA
Franco, I., Johansson, A., Olsson, K., Vrtačnik, P., Lundin, P., Helgadóttir, H.T., Larsson, M., Revêchon, G., Bosia, C., Pagnani, A., Provero, P., Gustafsson, T., Fischer, H., &amp; Eriksson, M. (2018). Somatic mutagenesis in satellite cells associates with human skeletal muscle aging. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-018-03244-6
Vancouver
Franco I, Johansson A, Olsson K, Vrtačnik P, Lundin P, Helgadóttir HT, et al. Somatic mutagenesis in satellite cells associates with human skeletal muscle aging. Nature Communications. 2018. doi:10.1038/s41467-018-03244-6.
BibTeX
@article{irene2018Somati, title = {Somatic mutagenesis in satellite cells associates with human skeletal muscle aging}, author = {Irene Franco and Anna Johansson and Karl Olsson and Peter Vrtačnik and Pär Lundin and Hafdís T. Helgadóttir and Malin Larsson and Gwladys Revêchon and Carla Bosia and Andrea Pagnani and Paolo Provero and Thomas Gustafsson and Heléne Fischer and Maria Eriksson}, journal = {Nature Communications}, year = {2018}, doi = {10.1038/s41467-018-03244-6}, }

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