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Mutations in thyroid hormone receptor α1 cause premature neurogenesis and progenitor cell depletion in human cortical development

  • Teresa G Krieger
  • , Carla M Moran
  • , Alberto Frangini
  • , W. Edward Visser
  • , Erik Schoenmakers
  • , Francesco Muntoni
  • , Chris A Clark
  • , David Gadian
  • , Wui K Chong
  • , Adam Kuczynski
  • , Mehul Dattani
  • , Greta Lyons
  • , Alexandra Efthymiadou
  • , Faraneh Varga-Khadem
  • , Benjamin D Simons
  • , Krishna Chatterjee
  • , Frederick J Livesey*
  • *Corresponding author for this work
  • University of Cambridge
  • Dubowitz Neuromuscular Centre
  • Great Ormond Street Institute of Child Health
  • Great Ormond Street Children's Hospital & Institute of Child Health
  • University Campus of Ioannina

Research output: Contribution to journalArticleAcademicpeer-review

36 Citations (Scopus)
40 Downloads (Pure)

Abstract

Mutations in the thyroid hormone receptor α 1 gene (THRA) have recently been identified as a cause of intellectual deficit in humans. Patients present with structural abnormalities including microencephaly, reduced cerebellar volume and decreased axonal density. Here, we show that directed differentiation of THRA mutant patient-derived induced pluripotent stem cells to forebrain neural progenitors is markedly reduced, but mutant progenitor cells can generate deep and upper cortical layer neurons and form functional neuronal networks. Quantitative lineage tracing shows that THRA mutation-containing progenitor cells exit the cell cycle prematurely, resulting in reduced clonal output. Using a micropatterned chip assay, we find that spatial self-organization of mutation-containing progenitor cells in vitro is impaired, consistent with down-regulated expression of cell-cell adhesion genes. These results reveal that thyroid hormone receptor α1 is required for normal neural progenitor cell proliferation in human cerebral cortical development. They also exemplify quantitative approaches for studying neurodevelopmental disorders using patient-derived cells in vitro.

Original languageEnglish
Pages (from-to)22754-22763
Number of pages10
JournalProceedings of the National Academy of Sciences of the United States of America
Volume116
Issue number45
DOIs
Publication statusPublished - 5 Nov 2019

Bibliographical note

Copyright © 2019 the Author(s). Published by PNAS.

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