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TSC tunes progenitor balance and upper-layer neuron generation in neocortex

  • Cristine R. Casingal
  • , Naoki Nakagawa
  • , Keiko Yabuno-Nakagawa
  • , Cailyn Meyer
  • , Siling Liu
  • , Vasiliki Gkini
  • , Su Ji Cho
  • , Mario Skarica
  • , Dan Liang
  • , Jeremy M. Simon
  • , Nana Matoba
  • , Ahana Mallick
  • , Rubal Singla
  • , Jieun Park
  • , Chu Wei Huang
  • , Hailey Wilson
  • , Janice Lee
  • , H. Troy Ghashghaei
  • , Garret D. Stuber
  • , Oskari Heikinheimo
  • Takashi Namba, Jason L. Stein, E. S. Anton

研究成果: ジャーナルへの寄稿学術論文査読

抄録

The appropriate generation of upper-layer neurons is necessary to create the circuits that underlie complex brain functions. Radial progenitors divide asymmetrically to generate neurogenic intermediate progenitors (IPs; also known as intermediate precursors), and the symmetric proliferation of IPs rapidly expands the cortical neuronal population. The dynamic maintenance of balanced diversity of cortical progenitors and the resultant generation, placement and connectivity of appropriate numbers of different classes of neurons serve to guide the formation of a properly wired cerebral cortex1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11–12. However, the molecular logic that instructs progenitor balance remains unclear. Here we show that members of the tuberous sclerosis complex (TSC)—proteins that are major regulators of cellular metabolism—function to sculpt radial progenitor–intermediate progenitor balance, radial unit organization and the resultant generation of upper-layer neurons. Developmental deletion of TSC proteins alters the radial progenitor and IP balance and changes radial unit composition, leading to increased upper-layer neuron generation and aberrant cortical connectivity. Human-specific modulation of TSC protein expression through human-gained enhancers affects progenitor balance and generation of upper-layer neurons. Evolutionary downregulation of TSC protein expression may therefore provide an effective route to radial unit sculpting and the expanded generation of upper-layer neurons necessary for higher-order brain functions in humans.

本文言語英語
ページ(範囲)417-427
ページ数11
ジャーナルNature
650
8101
DOI
出版ステータス出版済み - 12-02-2026
外部発表はい

All Science Journal Classification (ASJC) codes

  • 一般

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