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April 26, 2026Nature Neuroscience2 citationsOpen Access

Transcriptomic and phenotypic convergence of neurodevelopmental disorder risk genes in vitro and in vivo

MGMeilin Fernandez GarciaKRKayla Retallick-TownsleyAPApril PruittYale University

Key Points

  • This research aims to explore how neurodevelopmental disorder risk genes converge on similar biological pathways, affecting neuron development and function.
  • Utilized a pooled CRISPR approach to target 23 neurodevelopmental disorder genes.
  • Examined gene expression effects in human induced pluripotent stem cell-derived neural progenitor cells and different types of neurons.
  • Analyzed transcriptomic signatures and behavioral phenotypes in zebrafish NDD gene mutants.
  • Identified the greatest number of convergent genes in mature glutamatergic neurons, particularly related to synaptic, epigenetic, and mitochondrial pathways.
  • Observed significant convergent networks among NDD genes with similar biological and clinical attributes.
  • Drugs predicted to counteract convergent transcriptomic effects improved behaviors in zebrafish models.

Abstract

Abstract Diverse risk genes have been identified for neurodevelopmental disorders (NDDs), but how these genes converge on similar biological pathways in neurons, and thus give rise to similar phenotypes, is unclear. Here we apply a pooled CRISPR approach to successfully target 23 NDD loss-of-function genes with roles in chromatin biology and examine convergent effects on gene expression across human induced pluripotent stem cell-derived neural progenitor cells, glutamatergic neurons and GABAergic neurons. Points of convergence vary between these cell types, with the greatest number of convergent genes and strongest convergent networks in mature glutamatergic neurons, where they broadly represent synaptic, epigenetic and, unexpectedly, mitochondrial pathways. The most convergent networks were observed between NDD genes with shared biological annotations, clinical associations and co-expression patterns in human post-mortem brain. Drugs that were predicted to reverse convergent transcriptomic signatures and/or arousal and sensory processing behaviors ameliorated behavioral phenotypes in zebrafish NDD gene mutants. These results suggest that convergent effects of NDD risk genes could provide clinically useful insights.

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Cite This Study

Garcia et al. (2026) studied this question.

synapsesocial.com/papers/69edad274a46254e215b4cbfhttps://doi.org/10.1038/s41593-026-02247-7
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