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PMID: 20596238 Published · epublish English

Organogenesis relies on SoxC transcription factors for the survival of neural and mesenchymal progenitors.

Nature communications ·Vol. 1 ·2011-07-01

Bhattaram Pallavi, Penzo-Méndez Alfredo, Sock Elisabeth, Colmenares Clemencia, Kaneko Kotaro J, Vassilev Alex, Depamphilis Melvin L, Wegner Michael, Lefebvre Véronique

Abstract

During organogenesis, neural and mesenchymal progenitor cells give rise to many cell lineages, but their molecular requirements for self-renewal and lineage decisions are incompletely understood. In this study, we show that their survival critically relies on the redundantly acting SoxC transcription factors Sox4, Sox11 and Sox12. The more SoxC alleles that are deleted in mouse embryos, the more severe and widespread organ hypoplasia is. SoxC triple-null embryos die at midgestation unturned and tiny, with normal patterning and lineage specification, but with massively dying neural and mesenchymal progenitor cells. Specific inactivation of SoxC genes in neural and mesenchymal cells leads to selective apoptosis of these cells, suggesting SoxC cell-autonomous roles. Tead2 functionally interacts with SoxC genes in embryonic development, and is a direct target of SoxC proteins. SoxC genes therefore ensure neural and mesenchymal progenitor cell survival, and function in part by activating this transcriptional mediator of the Hippo signalling pathway.

Article Info
Journal
Nature communications
Abbr.
Nat Commun
Published
2011-07-01
Indexed
2011-03-22
Updated
2016-11-22
Language
English
Country/Region
England
NLM ID
101528555
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