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
Peter J. Park, Christopher A. Walsh, Clotilde Lagier‐Tourenne, Eunjung Alice Lee, Lovelace J. Luquette, Diane D. Shao, August Yue Huang, Guanlan Dong, Zinan Zhou, Junho Kim, Jayoung Ku, K M Kim, Nandini Ramesh, Mingyun Bae, Ann Caplin, Bezawit Sahile, Kow Essuman, Eitan Goodman, Michael B. Miller, William J. Nathan, Andre Nussenzweig
2026-07-01

TOP1-DNA covalent complexesTOP1-mediated genomic damagesomatic insertions/deletions (sIndels)somatic single-nucleotide variants (sSNVs)
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.
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.

Neuronal genomes from patients with C9ORF72 ALS, C9ORF72 FTD, Alzheimer's disease, and controls

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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Peter J. Park
Christopher A. Walsh
Clotilde Lagier‐Tourenne
Eunjung Alice Lee
Lovelace J. Luquette
Diane D. Shao
August Yue Huang
Guanlan Dong
Zinan Zhou
Junho Kim
Jayoung Ku
K M Kim
Nandini Ramesh
Mingyun Bae
Ann Caplin
Bezawit Sahile
Kow Essuman
Eitan Goodman
Michael B. Miller
William J. Nathan
Andre Nussenzweig
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