Snai1 Promotes ESC Exit from the Pluripotency by Direct Repression of Self-Renewal Genes

Author:

Galvagni Federico1,Lentucci Claudia1,Neri Francesco2,Dettori Daniela2,De Clemente Caterina1,Orlandini Maurizio1,Anselmi Francesca2,Rapelli Stefania12,Grillo Michela1,Borghi Sara1,Oliviero Salvatore23

Affiliation:

1. Dipartimento di Biotecnologie Chimica e Farmacia, Università di Siena, Siena, Italy

2. HuGeF, Torino, Italy

3. Dipartimento di Scienze Della Vita e Biologia Dei Sistemi Università di Torino, Torino, Italy

Abstract

Abstract Although much is known about the pluripotency self-renewal circuitry, the molecular events that lead embryonic stem cells (ESCs) exit from pluripotency and begin differentiation are largely unknown. We found that the zinc finger transcription factor Snai1, involved in gastrulation and epithelial-mesenchymal transition, is already expressed in the inner cell mass of the preimplantation blastocysts. In ESCs, Snai1 does not respond to TGFβ or BMP4 signaling but it is induced by retinoic acid treatment, which induces the binding, on the Snai1 promoter, of the retinoid receptors RARγ and RXRα, the dissociation of the Polycomb repressor complex 2 which results in the decrease of H3K27me3, and the increase of histone H3K4me3. Snai1 mediates the repression of pluripotency genes by binding directly to the promoters of Nanog, Nr5a2, Tcl1, c-Kit, and Tcfcp2l1. The transient activation of Snai1 in embryoid bodies induces the expression of the markers of all three germ layers. These results suggest that Snai1 is a key factor that triggers ESCs exit from the pluripotency state and initiate their differentiation processes. Stem Cells  2015;33:742–750

Funder

Associazione Italiana Ricerca sul Cancro

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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