4.8 Article

JMJD3 and UTX determine fidelity and lineage specification of human neural progenitor cells

Journal

NATURE COMMUNICATIONS
Volume 11, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-14028-x

Keywords

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Funding

  1. National Key Research and Development Program of China, Stem Cell and Translational Research [2017YFA0102600]
  2. National Natural Science Foundation of China [31801220, 31421004, 31500791, 81571238, 31801225, 81672261, 81700149]
  3. China Postdoctoral Science Foundation [2019M652953]
  4. Strategic Priority Research Program of Chinese Academy of Sciences [XDA16030201]
  5. Natural Science Foundation of Guangdong Province, China [2016A030313167]
  6. Natural Science Foundation of Guangdong Province [2014A030312012, 2017A030310376]
  7. Science and Information Technology of Guangzhou Key Project [201904020045]
  8. Science and Technology Program of Guangzhou [201904010462, 201804010339, 201508020257]
  9. Hundred-talented program from Chinese Academy of Sciences
  10. Guangdong Province Special Program for Elite Scientists in Science and Technology Innovation [2015TX01R203]
  11. Informationization Special Project of Chinese Academy of Sciences, E-Science Application for Knowledge Discovery in Stem Cells [XXH13506-203]
  12. Innovative Team Program of Guangzhou Regenerative Medicine and Health Guangdong Laboratory [2018GZR110104005]
  13. Open Research Funds of the State Key Laboratory of Ophthalmology [2019KF06]

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Neurogenesis, a highly orchestrated process, entails the transition from a pluripotent to neural state and involves neural progenitor cells (NPCs) and neuronal/glial subtypes. However, the precise epigenetic mechanisms underlying fate decision remain poorly understood. Here, we delete KDM6s (JMJD3 and/or UTX), the H3K27me3 demethylases, in human embryonic stem cells (hESCs) and show that their deletion does not impede NPC generation from hESCs. However, KDM6-deficient NPCs exhibit poor proliferation and a failure to differentiate into neurons and glia. Mechanistically, both JMJD3 and UTX are found to be enriched in gene loci essential for neural development in hNPCs, and KDM6 impairment leads to H3K27me3 accumulation and blockade of DNA accessibility at these genes. Interestingly, forced expression of neuron-specific chromatin remodelling BAF (nBAF) rescues the neuron/glia defect in KDM6-deficient NPCs despite H3K27me3 accumulation. Our findings uncover the differential requirement of KDM6s in specifying NPCs and neurons/glia and highlight the contribution of individual epigenetic regulators in fate decisions in a human development model.

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