Single-cell transcriptomics reveals a new dynamical function of transcription factors during embryonic hematopoiesis

Isabelle Bergiers(European Molecular Biology Laboratory), Tallulah Andrews(Cornell University), Özge Vargel Bölükbaşı(European Molecular Biology Laboratory), Andreas Buneß(European Molecular Biology Laboratory), Ewa Janosz(European Molecular Biology Laboratory), Natalia López-Anguita(European Molecular Biology Laboratory), Kerstin Ganter(European Molecular Biology Laboratory), Kinga Kosim(European Molecular Biology Laboratory), Cemre Celen(European Molecular Biology Laboratory), Gülce Itır Perçin(European Molecular Biology Laboratory), Paul Collier(Cornell University), Bianka Baying(Cornell University), Vladimı́r Beneš(European Molecular Biology Laboratory), Martin Hemberg(Wellcome Sanger Institute), Christophe Lancrin(European Molecular Biology Laboratory)
eLife
March 19, 2018
Cited by 56Open Access
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Abstract

Recent advances in single-cell transcriptomics techniques have opened the door to the study of gene regulatory networks (GRNs) at the single-cell level. Here, we studied the GRNs controlling the emergence of hematopoietic stem and progenitor cells from mouse embryonic endothelium using a combination of single-cell transcriptome assays. We found that a heptad of transcription factors (Runx1, Gata2, Tal1, Fli1, Lyl1, Erg and Lmo2) is specifically co-expressed in an intermediate population expressing both endothelial and hematopoietic markers. Within the heptad, we identified two sets of factors of opposing functions: one (Erg/Fli1) promoting the endothelial cell fate, the other (Runx1/Gata2) promoting the hematopoietic fate. Surprisingly, our data suggest that even though Fli1 initially supports the endothelial cell fate, it acquires a pro-hematopoietic role when co-expressed with Runx1. This work demonstrates the power of single-cell RNA-sequencing for characterizing complex transcription factor dynamics.


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