We characterized the establishment of an Epidermal Growth Factor Receptor (EGFR) organizing center (EOC) during leg development in Drosophila melanogaster. Initial EGFR activation occurs in the center of leg discs by expression of the EGFR ligand Vn and the EGFR ligand-processing protease Rho, each through single enhancers, vnE and rhoE, that integrate inputs from Wg, Dpp, Dll and Sp1. Deletion of vnE and rhoE eliminates vn and rho expression in the center of the leg imaginal discs, respectively. Animals with deletions of both vnE and rhoE (but not individually) show distal but not medial leg truncations, suggesting that the distal source of EGFR ligands acts at short-range to only specify distal-most fates, and that multiple additional 'ri...
The adult Drosophila melanogaster body develops from imaginal discs, groups of cells set-aside durin...
Development of Drosophila leg imaginal discs provides an ideal model to study hormone-regulated morp...
AbstractCellular interaction between the proximal and distal domains of the limb plays key roles in ...
We characterized the establishment of an Epidermal Growth Factor Receptor (EGFR) organizing center (...
We characterized the establishment of an Epidermal Growth Factor Receptor (EGFR) organizing center (...
A major pursuit of Developmental Biology is to determine how organisms composed of cells containing ...
AbstractThe evolution of a mechanism to generate a proximal–distal axis perpendicular to the anterio...
wingless and decapentaplegic signaling establishes the proximal-distal axis of Drosophila legs by ac...
AbstractSignaling by the Drosophila EGF receptor (DER) is modulated by four known EGF-like proteins:...
Evolution of segmented limbs is one of the key innovations of Arthropoda, allowing development of fu...
Activation of the Drosophila EGF-receptor (DER) is spatially and temporally controlled by the releas...
AbstractIn Drosophila, wings and halteres are the dorsal appendages of the second and third thoracic...
AbstractBackground: During animal development, cells need to make spatially and temporally regulated...
The adult Drosophila melanogaster body develops from imaginal discs, groups of cells set-aside durin...
In Drosophila, wings and halteres are the dorsal appendages of the second and third thoracic segment...
The adult Drosophila melanogaster body develops from imaginal discs, groups of cells set-aside durin...
Development of Drosophila leg imaginal discs provides an ideal model to study hormone-regulated morp...
AbstractCellular interaction between the proximal and distal domains of the limb plays key roles in ...
We characterized the establishment of an Epidermal Growth Factor Receptor (EGFR) organizing center (...
We characterized the establishment of an Epidermal Growth Factor Receptor (EGFR) organizing center (...
A major pursuit of Developmental Biology is to determine how organisms composed of cells containing ...
AbstractThe evolution of a mechanism to generate a proximal–distal axis perpendicular to the anterio...
wingless and decapentaplegic signaling establishes the proximal-distal axis of Drosophila legs by ac...
AbstractSignaling by the Drosophila EGF receptor (DER) is modulated by four known EGF-like proteins:...
Evolution of segmented limbs is one of the key innovations of Arthropoda, allowing development of fu...
Activation of the Drosophila EGF-receptor (DER) is spatially and temporally controlled by the releas...
AbstractIn Drosophila, wings and halteres are the dorsal appendages of the second and third thoracic...
AbstractBackground: During animal development, cells need to make spatially and temporally regulated...
The adult Drosophila melanogaster body develops from imaginal discs, groups of cells set-aside durin...
In Drosophila, wings and halteres are the dorsal appendages of the second and third thoracic segment...
The adult Drosophila melanogaster body develops from imaginal discs, groups of cells set-aside durin...
Development of Drosophila leg imaginal discs provides an ideal model to study hormone-regulated morp...
AbstractCellular interaction between the proximal and distal domains of the limb plays key roles in ...