Dpp signaling activity requires Pentagone to scale with tissue size in the growing Drosophila wing imaginal disc.
Détails
Télécharger: BIB_96060DD10D8B.P001.pdf (2901.68 [Ko])
Etat: Public
Version: de l'auteur⸱e
Etat: Public
Version: de l'auteur⸱e
ID Serval
serval:BIB_96060DD10D8B
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Dpp signaling activity requires Pentagone to scale with tissue size in the growing Drosophila wing imaginal disc.
Périodique
PLoS Biology
ISSN
1545-7885 (Electronic)
ISSN-L
1544-9173
Statut éditorial
Publié
Date de publication
2011
Volume
9
Numéro
10
Pages
e1001182
Langue
anglais
Résumé
The wing of the fruit fly, Drosophila melanogaster, with its simple, two-dimensional structure, is a model organ well suited for a systems biology approach. The wing arises from an epithelial sac referred to as the wing imaginal disc, which undergoes a phase of massive growth and concomitant patterning during larval stages. The Decapentaplegic (Dpp) morphogen plays a central role in wing formation with its ability to co-coordinately regulate patterning and growth. Here, we asked whether the Dpp signaling activity scales, i.e. expands proportionally, with the growing wing imaginal disc. Using new methods for spatial and temporal quantification of Dpp activity and its scaling properties, we found that the Dpp response scales with the size of the growing tissue. Notably, scaling is not perfect at all positions in the field and the scaling of target gene domains is ensured specifically where they define vein positions. We also found that the target gene domains are not defined at constant concentration thresholds of the downstream Dpp activity gradients P-Mad and Brinker. Most interestingly, Pentagone, an important secreted feedback regulator of the pathway, plays a central role in scaling and acts as an expander of the Dpp gradient during disc growth.
Mots-clé
Animals, DNA-Binding Proteins/metabolism, Drosophila Proteins/metabolism, Drosophila melanogaster/growth & development, Drosophila melanogaster/metabolism, Extracellular Matrix Proteins/metabolism, Female, Green Fluorescent Proteins/metabolism, Homeodomain Proteins/metabolism, Larva/growth & development, Larva/metabolism, Male, Microscopy, Fluorescence, Morphogenesis, Nerve Tissue Proteins/metabolism, Organ Size, Phosphorylation, Recombinant Fusion Proteins/metabolism, Repressor Proteins/metabolism, T-Box Domain Proteins/metabolism, Transcription Factors/metabolism, Wing/blood supply, Wing/growth & development
Pubmed
Web of science
Open Access
Oui
Création de la notice
01/12/2011 14:15
Dernière modification de la notice
20/08/2019 14:58