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September 30, 1950BMJ1,991 citationsOpen Access

Smoking and Carcinoma of the Lung

RDRichard DollAHA. B. Hill

Key Points

  • This research aims to understand how DNA repair mediated by DNA polymerase β contributes to neuronal development and genome stability.
  • Used forebrain-specific conditional knock-out mice (Emx1-Cre/Polβfl/fl and Nex-Cre/Polβfl/fl) to study Polβ's role.
  • Analyzed DNA double-strand breaks (DSBs) in neural progenitors and postmitotic neurons.
  • Conducted experiments with cultured Polβ-deficient neural progenitors exposed to base-damaging agents.
  • Loss of Polβ in cortical progenitors caused increased DSBs, leading to p53-mediated neuronal apoptosis.
  • Thinning of the cortical plate was observed, impacting corticofugal axon growth.
  • Cultured Polβ-deficient progenitors showed heightened DSBs in response to DNA-damaging agents.

Abstract

DNA repair is crucial for genome stability in the developing cortex, as somatic de novo mutations cause neurological disorders. However, how DNA repair contributes to neuronal development is largely unknown. To address this issue, we studied the spatiotemporal roles of DNA polymerase β (Polβ), a key enzyme in DNA base excision repair pathway, in the developing cortex using distinct forebrain-specific conditional knock-out mice, Emx1-Cre/Polβfl/fl and Nex-Cre/Polβfl/fl mice. Polβ expression was absent in both neural progenitors and postmitotic neurons in Emx1-Cre/Polβfl/fl mice, whereas only postmitotic neurons lacked Polβ expression in Nex-Cre/Polβfl/fl mice. We found that DNA double-strand breaks (DSBs) were frequently detected during replication in cortical progenitors of Emx1-Cre/Polβfl/fl mice. Increased DSBs remained in postmitotic cells, which resulted in p53-mediated neuronal apoptosis. This neuronal apoptosis caused thinning of the cortical plate, although laminar structure was normal. In addition, accumulated DSBs also affected growth of corticofugal axons but not commissural axons. These phenotypes were not observed in Nex-Cre/Polβfl/fl mice. Moreover, cultured Polβ-deficient neural progenitors exhibited higher sensitivity to the base-damaging agent methylmethanesulfonate, resulting in enhanced DSB formation. Similar damage was found by vitamin C treatment, which induces TET1-mediated DNA demethylation via 5-hydroxymethylcytosine. Together, genome stability mediated by Polβ-dependent base excision repair is crucial for the competence of neural progenitors, thereby contributing to neuronal differentiation in cortical development. SIGNIFICANCE STATEMENT DNA repair is crucial for development of the nervous system. However, how DNA polymerase β (Polβ)-dependent DNA base excision repair pathway contributes to the process is still unknown. We found that loss of Polβ in cortical progenitors rather than postmitotic neurons led to catastrophic DNA double-strand breaks (DSBs) during replication and p53-mediated neuronal apoptosis, which resulted in thinning of the cortical plate. The DSBs also affected corticofugal axon growth in surviving neurons. Moreover, induction of base damage and DNA demethylation intermediates in the genome increased DSBs in cultured Polβ-deficient neural progenitors. Thus, genome stability by Polβ-dependent base excision repair in neural progenitors is required for the viability and differentiation of daughter neurons in the developing nervous system.

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Cite This Study

Doll et al. (1950) studied this question.

synapsesocial.com/papers/69dbef3cd60f0b8828835c90https://doi.org/10.1136/bmj.2.4682.739
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1DNA polymerase β suppresses somatic indels at CpG dinucleotides in developing cortical neurons2025
  2. 2Hypomorphic Protein Expression of DNA Polymerase Beta in PolβL301R-V303R/L301R-V303R Knock-In Transgenic Mice Does Not Impact Global DNA Methylation Levels in the Midbrain2026
  3. 3PRMT5-mediated homologous recombination repair is essential to maintain genomic integrity of neural progenitor cells2024 · 9 citations
  4. 4An altered cell-specific subcellular distribution of translesion synthesis DNA polymerase kappa (POLK) in aging mouse neurons2026
  5. 5The DNA repair protein DNA-PKcs modulates synaptic plasticity via PSD-95 phosphorylation and stability2024 · 3 citations