Recurrent patterns of TOP1-mediated neuronal genomic damage shared by major neurodegenerative disorders
Рецидивирующие паттерны нейронального геномного повреждения, опосредованного TOP1, общие для основных нейродегенеративных заболеваний
2026-07-01
SCID: 54.1/u9stavqh
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TOP1-DNA covalent complexesTOP1-mediated genomic damagesomatic insertions/deletions (sIndels)somatic single-nucleotide variants (sSNVs)
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Abstract (AI)
Amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), and Alzheimer's disease (AD) represent two major categories of neurodegenerative disorders-TAR DNA-binding protein 43 (TDP-43) and tau proteinopathies-for which the mechanisms driving neuronal death remain unclear. Single-cell whole-genome sequencing of 469 neurons from C9ORF72 ALS, C9ORF72 FTD, AD, and control brains revealed increased somatic single-nucleotide variants (sSNVs) and insertions/deletions (sIndels) in all three diseases. Mutational signature analysis identified a disease-associated sSNV signature consistent with oxidative damage and an sIndel process affecting 22% of ALS, 76% of FTD, and 61% of AD neurons-but only 2% of control neurons-resembling signature ID4, previously linked to topoisomerase 1 (TOP1)-mediated mutagenesis. Rapid approach to DNA adduct recovery (RADAR) assays confirmed increased TOP1-DNA covalent complexes, and duplex sequencing confirmed the increased sIndels and identified single-strand events as likely precursor lesions. TOP1-associated sIndel mutagenesis and genome instability thus represent a mechanism shared by both TDP-43 and tau neurodegeneration.
Key Findings
1
A disease-associated sSNV mutational signature consistent with oxidative damage was identified across the neurodegenerative disorders.
2
An sIndel mutational process resembling COSMIC signature ID4, linked to TOP1-mediated mutagenesis, affected 22% of ALS, 76% of FTD, and 61% of AD neurons but only 2% of control neurons.
3
Duplex sequencing validated the increased sIndels and indicated single-strand events are likely precursor lesions to the observed indels.
4
RADAR assays confirmed increased TOP1-DNA covalent complexes in disease brains, supporting elevated TOP1 activity or trapping.
5
Single-cell whole-genome sequencing of 469 neurons showed increased somatic single-nucleotide variants (sSNVs) and insertions/deletions (sIndels) in C9ORF72 ALS, C9ORF72 FTD, and AD compared to controls.
6
TOP1-associated sIndel mutagenesis and resulting genome instability are a shared mechanism in both TDP-43 and tau proteinopathies driving neurodegeneration.
Research Object
Neuronal genomes from patients with C9ORF72 ALS, C9ORF72 FTD, Alzheimer's disease, and controls
Research Subject
TOP1-mediated genomic damage and associated mutagenesis (increased TOP1-DNA covalent complexes, somatic single-nucleotide variants and insertions/deletions, particularly an ID4-like sIndel signature) as a shared mechanism of neuronal genome instability across TDP-43 and tau neurodegeneration
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2026-07-01
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References available in scid.ai4
The GTEx Consortium atlas of genetic regulatory effects across human tissues2020
Brain cell type–specific enhancer–promoter interactome maps and disease - risk association2019
Massively parallel digital transcriptional profiling of single cells2017
Integrative analysis of 111 reference human epigenomes2015