4.6 Article

Rapid neurogenesis through transcriptional activation in human stem cells

期刊

MOLECULAR SYSTEMS BIOLOGY
卷 10, 期 11, 页码 -

出版社

WILEY
DOI: 10.15252/msb.20145508

关键词

gene regulatory networks; microRNAs; neurogenesis; stem cell; differentiation; transcriptomics

资金

  1. NIH [P50 HG005550]
  2. NSF STC EBICS [0939511]
  3. NSF ERC SynBERC [0540879]
  4. Swiss National Science Foundation
  5. Ernst Schering Foundation
  6. Canadian National Science and Engineering Research Council
  7. Lynch Foundation
  8. National Institute on Aging [5T32AG000222-22]

向作者/读者索取更多资源

Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human neuronal differentiation. However, it remains challenging to elucidate the underlying regulatory programs because differentiation protocols are laborious and often result in low neuron yields. Here, we overexpressed two Neurogenin transcription factors in human- induced pluripotent stem cells and obtained neurons with bipolar morphology in 4 days, at greater than 90% purity. The high purity enabled mRNA and microRNA expression profiling during neurogenesis,thus revealing the genetic programs involved in the rapid transition from stem cell to neuron. The resulting cells exhibited transcriptional, morphological and functional signatures of differentiated neurons, with greatest transcriptional similarity to prenatal human brain samples. Our analysis revealed a network of key transcription factors and microRNAs that promoted loss of pluripotency and rapid neurogenesis via progenitor states. Perturbations of key transcription factors affected homogeneity and phenotypic properties of the resulting neurons, suggesting that a systems-level view of the molecular biology of differentiation may guide subsequent manipulation of human stem cells to rapidly obtain diverse neuronal types.

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