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Sequence logic at enhancers governs a dual mechanism of endodermal organ fate induction by FOXA pioneer factors.
Geusz, Ryan J; Wang, Allen; Lam, Dieter K; Vinckier, Nicholas K; Alysandratos, Konstantinos-Dionysios; Roberts, David A; Wang, Jinzhao; Kefalopoulou, Samy; Ramirez, Araceli; Qiu, Yunjiang; Chiou, Joshua; Gaulton, Kyle J; Ren, Bing; Kotton, Darrell N; Sander, Maike.
Afiliação
  • Geusz RJ; Department of Pediatrics, Pediatric Diabetes Research Center, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Wang A; Department of Cellular & Molecular Medicine, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Lam DK; Sanford Consortium for Regenerative Medicine, La Jolla, San Diego, CA, 92093, USA.
  • Vinckier NK; Biomedical Graduate Studies Program, University of California San Diego, La Jolla, San Diego, CA, 92037, USA.
  • Alysandratos KD; Department of Pediatrics, Pediatric Diabetes Research Center, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Roberts DA; Department of Cellular & Molecular Medicine, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Wang J; Sanford Consortium for Regenerative Medicine, La Jolla, San Diego, CA, 92093, USA.
  • Kefalopoulou S; Department of Pediatrics, Pediatric Diabetes Research Center, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Ramirez A; Department of Cellular & Molecular Medicine, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Qiu Y; Sanford Consortium for Regenerative Medicine, La Jolla, San Diego, CA, 92093, USA.
  • Chiou J; Department of Pediatrics, Pediatric Diabetes Research Center, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Gaulton KJ; Department of Cellular & Molecular Medicine, University of California, La Jolla, San Diego, CA, 92093, USA.
  • Ren B; Sanford Consortium for Regenerative Medicine, La Jolla, San Diego, CA, 92093, USA.
  • Kotton DN; Center for Regenerative Medicine of Boston University and Boston Medical Center, Boston, MA, 02118, USA.
  • Sander M; The Pulmonary Center and Department of Medicine, Boston University School of Medicine, Boston, MA, 02118, USA.
Nat Commun ; 12(1): 6636, 2021 11 17.
Article em En | MEDLINE | ID: mdl-34789735
FOXA pioneer transcription factors (TFs) associate with primed enhancers in endodermal organ precursors. Using a human stem cell model of pancreas differentiation, we here discover that only a subset of pancreatic enhancers is FOXA-primed, whereas the majority is unprimed and engages FOXA upon lineage induction. Primed enhancers are enriched for signal-dependent TF motifs and harbor abundant and strong FOXA motifs. Unprimed enhancers harbor fewer, more degenerate FOXA motifs, and FOXA recruitment to unprimed but not primed enhancers requires pancreatic TFs. Strengthening FOXA motifs at an unprimed enhancer near NKX6.1 renders FOXA recruitment pancreatic TF-independent, induces priming, and broadens the NKX6.1 expression domain. We make analogous observations about FOXA binding during hepatic and lung development. Our findings suggest a dual role for FOXA in endodermal organ development: first, FOXA facilitates signal-dependent lineage initiation via enhancer priming, and second, FOXA enforces organ cell type-specific gene expression via indirect recruitment by lineage-specific TFs.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Elementos Facilitadores Genéticos / Endoderma / Fator 3-alfa Nuclear de Hepatócito / Fator 3-beta Nuclear de Hepatócito Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Revista: Nat Commun Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Elementos Facilitadores Genéticos / Endoderma / Fator 3-alfa Nuclear de Hepatócito / Fator 3-beta Nuclear de Hepatócito Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Revista: Nat Commun Ano de publicação: 2021 Tipo de documento: Article