BMP signalling controls the construction of vertebrate mucociliary epithelia
Author(s) -
Marie Cibois,
Guillaume Luxardi,
B. Chevalier,
Virginie Thomé,
Olivier Mercey,
LaureEmmanuelle Zaragosi,
Pascal Barbry,
Andrea Pasini,
Brice Marcet,
Laurent Kodjabachian
Publication year - 2015
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.118679
Subject(s) - biology , xenopus , microbiology and biotechnology , epithelium , vertebrate , epidermis (zoology) , morphogenesis , developmental biology , toad , anatomy , endocrinology , genetics , gene
Despite the importance of mucociliary epithelia in animal physiology, the mechanisms controlling their establishment are poorly understood. Using the developing Xenopus epidermis and regenerating human upper airways, we reveal the importance of BMP signalling for the construction of vertebrate mucociliary epithelia. In Xenopus, attenuation of BMP activity is necessary for the specification of multiciliated cells (MCCs), ionocytes and small secretory cells (SSCs). Conversely, BMP activity is required for the proper differentiation of goblet cells. Our data suggest that the BMP and Notch pathways interact to control fate choices in the developing epidermis. Unexpectedly, BMP activity is also necessary for the insertion of MCCs, ionocytes and SSCs into the surface epithelium. In human, BMP inhibition also strongly stimulates the formation of MCCs in normal and pathological (cystic fibrosis) airway samples, whereas BMP overactivation has the opposite effect. This work identifies the BMP pathway as a key regulator of vertebrate mucociliary epithelium differentiation and morphogenesis.
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