Contrasting patterns of somatic mutations in neurons and glia reveal differential predisposition to disease in the aging human brain
Ganz, J.; Luquette, L. J.; Bizzotto, S.; Bohrson, C.; Jin, H.; Miller, M. B.; Zhou, Z.; Galor, A.; Park, P. J.; Walsh, C. A.
Show abstract
Characterizing the mechanisms of somatic mutations in the brain is important for understanding aging and disease, but little is known about the mutational patterns of different cell types. We performed whole-genome sequencing of 71 oligodendrocytes and 51 neurons from neurotypical individuals (0.4 to 104 years old) and identified >67,000 somatic single nucleotide variants (sSNVs) and small insertions and deletions (indels). While both cell types accumulate mutations with age, oligodendrocytes accumulate sSNVs 69% faster than neurons (27/year versus 16/year) whereas indels accumulate 42% slower (1.8/year versus 3.1/year). Correlation with single-cell RNA and chromatin accessibility from the same brains revealed that oligodendrocyte mutations are enriched in inactive genomic regions and are distributed similarly to mutations in brain cancers. In contrast, neuronal mutations are enriched in open, transcriptionally active chromatin. These patterns highlight differences in the mutagenic processes in glia and neurons and suggest cell type-specific, age-related contributions to neurodegeneration and oncogenesis.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transcription start sites experience a high influx of heritable variants fuelled by early development 96%
- Cell-type, single-cell, and spatial signatures of brain-region specific splicing in postnatal development 96%
- TAD Evolutionary and functional characterization reveals diversity in mammalian TAD boundary properties and function 96%
Similar papers in this journal
- Comprehensive analysis of clustered mutations in cancer reveals recurrent APOBEC3 mutagenesis of ecDNA 96%
- A genome-wide mutational constraint map quantified from variation in 76,156 human genomes 96%
- Somatic mosaicism in the mature brain reveals clonal cellular distributions during cortical development 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.