EPISODE · Aug 2, 2026 · 14 MIN
1371-TOP1-Mediated Genomic Damage in ALS
from Paper Talk
This study utilizes single-cell whole-genome sequencing to reveal that neurons in ALS, FTD, and Alzheimer’s disease exhibit significantly elevated levels of somatic mutations compared to healthy brains. Researchers identified a specific mutational signature primarily composed of 2-bp deletions, which serves as a unifying marker of genomic instability across these diverse neurodegenerative conditions. This damage is driven by the aberrant activity of topoisomerase 1 (TOP1), an enzyme that becomes trapped on DNA and causes strand breaks, especially under conditions of oxidative stress. Interestingly, these high mutation burdens were found in both neurons with and without TDP-43 pathology, suggesting that the genetic decay occurs independently of certain classic disease markers. Furthermore, the absence of this specific genomic damage in cerebellar cells highlights a unique vulnerability in the cortical neurons typically ravaged by these disorders. Ultimately, the findings suggest that TOP1-mediated DNA damage represents a shared biological pathway that contributes to the death of neurons in multiple forms of dementia.References:Zhou Z, Luquette L J, Dong G, et al. Recurrent patterns of TOP1-mediated neuronal genomic damage shared by major neurodegenerative disorders[J]. Cell, 2026.前往小宇宙评论区与主播互动
Embed this episode
Ready to play
1371-TOP1-Mediated Genomic Damage in ALS
No transcript for this episode yet
Similar Episodes
No similar episodes found.
Similar Podcasts
No similar podcasts found.