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The ChAHP chromatin remodelling complex regulates a network of neurodevelopmental disorder risk genes to scale the production of neocortical layers (cut&run-seq)

GSE255599 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2024/12/29 Platform GPL19057
Summary
Although chromatin remodellers are among the most important risk genes associated with neurodevelopmental disorders (NDDs), the roles of these complexes during brain development are in many cases unclear. Here, we focused on the recently discovered ChAHP chromatin remodelling complex. The zinc finger and homeodomain transcription factor ADNP is a core subunit of this complex, and de novo ADNP mutations lead to intellectual disability and autism spectrum disorder. However, germline Adnp knockout mice were previously shown to exhibit early embryonic lethality, obscuring subsequent roles for the ChAHP complex in neurogenesis. Here, we employed single cell transcriptomics, cut&run-seq, and histological approaches to characterize mice conditionally ablated for the ChAHP subunits Adnp and Chd4. We show that during neocortical development, Adnp and Chd4 orchestrate the production of late-born, upper-layer neurons through a two-step process. First, Adnp is required to sustain progenitor proliferation specifically during the developmental window for upper-layer cortical neurogenesis. Accordingly, we found that Adnp recruits Chd4 to genes associated with progenitor proliferation. Second, in postmitotic differentiated neurons, we define a network of risk genes linked to NDDs that are regulated by Adnp and Chd4. Taken together, these data demonstrate that ChAHP is critical for driving the expansion upper-layer cortical neurons, and for regulating neuronal gene expression programs, suggesting that these processes may potentially contribute to NDD etiology.
Published in
The chromatin remodeler ADNP regulates neurodevelopmental disorder risk genes and neocortical neurogenesis
Clémot-Dupont S, Lourenço Fernandes JA, Larrigan S et al. · Proceedings of the National Academy of Sciences of the United States of America 2025 · PMID 39808658 · doi:10.1073/pnas.2405981122
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Also filed as BioProject PRJNA1075714 and SRA study SRP489407. Searching any of these in the dataset finder brings you back here.

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