4.7 Article

SCL/TAL1-mediated Transcriptional Network Enhances Megakaryocytic Specification of Human Embryonic Stem Cells

期刊

MOLECULAR THERAPY
卷 23, 期 1, 页码 158-170

出版社

CELL PRESS
DOI: 10.1038/mt.2014.196

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资金

  1. Junta de Andalucia/FEDER [SAS-111244, P10-CTS-6406, P08-CTS-3678, PI0407/2012, PI0160/2012, P09-CTS-04532, PAIDI-Bio-326, PI0001/2009]
  2. Instituto de Salud Carlos III-FEDER [PI10/00449, CP09/0063, PI12/01598, PI12/01097, CP12/03175, CP07/00059, PI11/00119]
  3. TerCel [RD12/0019/0006]
  4. MINECO [SAF2013-43065]
  5. ERANET E-Rare [PI12/03112]
  6. Spanish Association Against Cancer Foundation [CI110023]
  7. Sandra Ibarra Foundation
  8. Obra Social La Caixa/Fundacio Josep Carreras
  9. ICREA Funding Source: Custom

向作者/读者索取更多资源

Human embryonic stem cells (hESCs) are a unique in vitro model for studying human developmental biology and represent a potential source for cell replacement strategies. Platelets can be generated from cord blood progenitors and hESCs; however, the molecular mechanisms and determinants controlling the in vitro megakaryocytic specification of hESCs remain elusive. We have recently shown that stem cell leukemia (SCL) overexpression accelerates the emergence of hemato-endothelial progenitors from hESCs and promotes their subsequent differentiation into blood cells with higher clonogenic potential. Given that SCL participates in megakaryocytic commitment, we hypothesized that it may potentiate megakaryopoiesis from hESCs. We show that ectopic SCL expression enhances the emergence of megakaryocytic precursors, mature megakaryocytes (MKs), and platelets in vitro. SCL-overexpressing MKs and platelets respond to different activating stimuli similar to their control counterparts. Gene expression profiling of megakaryocytic precursors shows that SCL overexpression renders a megakaryopoietic molecular signature. Connectivity Map analysis reveals that trichostatin A (TSA) and suberoylanilide hydroxamic acid (SAHA), both histone deacetylase (HDAC) inhibitors, functionally mimic SCL-induced effects. Finally, we confirm that both TSA and SAHA treatment promote the emergence of CD34(+) progenitors, whereas valproic acid, another HDAC inhibitor, potentiates MK and platelet production. We demonstrate that SCL and HDAC inhibitors are megakaryopoiesis regulators in hESCs.

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