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February 2, 2026Science7 citations

The evolution of gene regulation in mammalian cerebellum development

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ISIoannis SarropoulosMSMari SeppYMYutaro Mori

Key Points

  • The research aims to investigate the gene regulatory changes that have influenced cerebellum development across mammalian species.
  • Analyzed gene expression and chromatin accessibility using single-nucleus measurements.
  • Studied six mammals: human, bonobo, macaque, marmoset, mouse, and opossum.
  • Developed sequence-based models to reveal conserved regulatory codes.
  • Predicted chromatin accessibility across 240 mammalian species.
  • Identified core regulators of cell identity in cerebellum development.
  • Reconstructed evolutionary histories of human cis-regulatory elements.
  • Discovered sets of regulatory elements associated with positive selection.
  • Noted a recent gain of THRB expression in cerebellar progenitor cells.

Abstract

Gene regulatory changes are considered major drivers of evolutionary innovations, including the cerebellum’s expansion during human evolution, yet they remain largely unexplored. In this study, we combined single-nucleus measurements of gene expression and chromatin accessibility from six mammals (human, bonobo, macaque, marmoset, mouse, and opossum) to uncover conserved and diverged regulatory networks in cerebellum development. We identified core regulators of cell identity and developed sequence-based models that revealed conserved regulatory codes. By predicting chromatin accessibility across 240 mammalian species, we reconstructed the evolutionary histories of human cis-regulatory elements, identifying sets associated with positive selection and gene expression changes, including the recent gain of THRB expression in cerebellar progenitor cells. Collectively, our work reveals the shared and mammalian lineage-specific regulatory programs governing cerebellum development.

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Cite This Study

Sarropoulos et al. (2026) studied this question.

synapsesocial.com/papers/6980fc55c1c9540dea80e1abhttps://doi.org/10.1126/science.adw9154
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