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Transient exposure to miR-203 enhances the differentiation capacity of established pluripotent stem cells

  • María Salazar-Roa
  • , Marianna Trakala
  • , Mónica Álvarez-Fernández
  • , Fátima Valdés-Mora
  • , Cuiqing Zhong
  • , Jaime Muñoz
  • , Yang Yu
  • , Timothy J. Peters
  • , Osvaldo Graña-Castro
  • , Rosa Serrano
  • , Elisabet Zapatero-Solana
  • , María Abad
  • , María José Bueno
  • , Marta Gómez de Cedrón
  • , José Fernández-Piqueras
  • , Manuel Serrano
  • , María A. Blasco
  • , Da Zhi Wang
  • , Susan J. Clark
  • , Juan Carlos Izpisua-Belmonte
  • Sagrario Ortega, Marcos Malumbres

Research output: Contribution to journalArticlepeer-review

Abstract

Full differentiation potential along with self-renewal capacity is a major property of pluripotent stem cells (PSCs). However, the differentiation capacity frequently decreases during expansion of PSCs in vitro. We show here that transient exposure to a single microRNA, expressed at early stages during normal development, improves the differentiation capacity of already-established murine and human PSCs. Short exposure to miR-203 in PSCs (miPSCs) induces a transient expression of 2C markers that later results in expanded differentiation potency to multiple lineages, as well as improved efficiency in tetraploid complementation and human–mouse interspecies chimerism assays. Mechanistically, these effects are at least partially mediated by direct repression of de novo DNA methyltransferases Dnmt3a and Dnmt3b, leading to transient and reversible erasure of DNA methylation. These data support the use of transient exposure to miR-203 as a versatile method to reset the epigenetic memory in PSCs, and improve their effectiveness in regenerative medicine.

Original languageEnglish (US)
Article numbere104324
JournalEMBO Journal
Volume39
Issue number16
DOIs
StatePublished - Aug 17 2020
Externally publishedYes

Keywords

  • differentiation
  • epigenetics
  • microRNAs
  • pluripotency
  • stem cells

ASJC Scopus subject areas

  • General Neuroscience
  • Molecular Biology
  • General Biochemistry, Genetics and Molecular Biology
  • General Immunology and Microbiology

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