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A role for the Tgf-β/Bmp co-receptor Endoglin in the molecular oscillator that regulates the hair follicle cycle

Author
Calvo Sánchez, María Inmaculada; Fernández-Martos, Marta; Carrasco Cerro, Elisauntranslated; Moreno Bueno, Gemauntranslated; Bernabéu, Carmelo; Quintanilla, Miguel; Espada Regalado, Jesús
Entity
UAM. Departamento de Biología
Publisher
Oxford University Press
Date
2018-09-18
Citation
10.1093/jmcb/mjy051
Journal of Molecular Cell Biology 11.1 (2019): 39-52
 
 
 
ISSN
1674-2788 (Print); 1759-4685 (Electronic)
DOI
10.1093/jmcb/mjy051
Project
Gobierno de España. RTC-2014-2626-1; Gobierno de España. SAF2013-46183-R; Gobierno de España. SAF2013-43421-R; Comunidad de Madrid. S2010/BMD-2359
Subjects
Endoglin, hair follicle, skin stem cells, Wnt/β-catenin, Tgf-β/Bmp/Smad; Biología y Biomedicina / Biología
URI
http://hdl.handle.net/10486/706131
Rights
© The Author(s) (2018)

Abstract

The hair follicle is a biological oscillator that alternates growth, regression, and rest phases driven by the sequential activation of the proliferation/differentiation programs of resident stem cell populations. The activation of hair follicle stem cell niches and subsequent entry into the growing phase is mainly regulated by Wnt/β-catenin signalling, while regression and resting phases are mainly regulated by Tgf-β/Bmp/Smad activity. A major question still unresolved is the nature of the molecular switch that dictates the coordinated transition between both signalling pathways. Here we have focused on the role of Endoglin (Eng), a key co-receptor for members of the Tgfβ/Bmp family of growth factors. Using an Eng haploinsufficient mouse model, we report that Eng is required to maintain a correct follicle cycling pattern and for an adequate stimulation of hair follicle stem cell niches. We further report that β-catenin binds to the Eng promoter depending on Bmp signalling. Moreover, we show that β-catenin interacts with Smad4 in a Bmp/Eng-dependent context and both proteins act synergistically to activate Eng promoter transcription. These observations point to the existence of a growth/rest switching mechanism in the hair follicle that is based on an Eng-dependent feedback cross-talk between Wnt/β-catenin and Bmp/Smad signals
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Google™ Scholar:Calvo Sánchez, María Inmaculada - Fernández-Martos, Marta - Carrasco Cerro, Elisa - Moreno Bueno, Gema - Bernabéu, Carmelo - Quintanilla, Miguel - Espada Regalado, Jesús

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