DOI

  • Angelos Papaspyropoulos
  • Leanne Bradley
  • Asmita Thapa
  • Chuen Yan Leung
  • Konstantinos Toskas
  • Delia Koennig
  • Dafni Eleftheria Pefani
  • Cinzia Raso
  • Claudia Grou
  • Garth Hamilton
  • Nikola Vlahov
  • Anna Grawenda
  • Syed Haider
  • Jagat Chauhan
  • Ludovico Buti
  • Xin Lu
  • Francesca Buffa
  • Grigory Dianov
  • Alex Von Kriegsheim
  • David Matallanas
  • Magdalena Zernicka-Goetz
  • Eric O'Neill

Transition from pluripotency to differentiation is a pivotal yet poorly understood developmental step. Here, we show that the tumour suppressor RASSF1A is a key player driving the early specification of cell fate. RASSF1A acts as a natural barrier to stem cell self-renewal and iPS cell generation, by switching YAP from an integral component in the beta-catenin-TCF pluripotency network to a key factor that promotes differentiation. We demonstrate that epigenetic regulation of the Rassf1A promoter maintains stemness by allowing a quaternary association of YAP-TEAD and beta-catenin-TCF3 complexes on the Oct4 distal enhancer. However, during differentiation, promoter demethylation allows GATA1-mediated RASSF1A expression which prevents YAP from contributing to the TEAD/beta-catenin-TCF3 complex. Simultaneously, we find that RASSF1A promotes a YAP-p73 transcriptional programme that enables differentiation. Together, our findings demonstrate that RASSF1A mediates transcription factor selection of YAP in stem cells, thereby acting as a functional "switch" between pluripotency and initiation of differentiation.

Язык оригиналаанглийский
Номер статьи424
Страницы (с-по)424
Число страниц15
ЖурналNature Communications
Том9
Номер выпуска1
DOI
СостояниеОпубликовано - 30 янв 2018

ID: 34101118