How multiple receptor tyrosine kinases coordinate cell fate determination is yet to be elucidated. We show here that the receptor for platelet-derived growth factor (PDGF) signaling recruits the p85 subunit of Phosphoinositide 3-kinase (PI3K) to regulate mammalian lens development. Activation of PI3K signaling not only prevents B-cell lymphoma 2 (BCL2)-Associated X (Bax)- and BCL2 Antagonist/Killer (Bak)-mediated apoptosis but also promotes Notch signaling to prevent premature cell differentiation. Reducing PI3K activity destabilizes the Notch intracellular domain, while the constitutive activation of Notch reverses the PI3K deficiency phenotype. In contrast, fibroblast growth factor receptors (FGFRs) recruit Fibroblast Growth Factor Recept...
Platelet-derived growth factor (PDGF), which governs multiple physiological functions in human lens ...
AbstractLens arises from ectoderm situated next to the optic vesicles. By thickening and invaginatin...
AbstractThe vertebrate lens provides an excellent model to study the mechanisms that regulate termin...
How multiple receptor tyrosine kinases coordinate cell fate determination is yet to be elucidated. W...
How multiple receptor tyrosine kinases coordinate cell fate determination is yet to be elucidated. W...
(A) Deletion of FGF-signaling mediators Frs2 and Shp2 abolished ERK phosphorylation and Jag1 express...
(A–B) AKT phosphorylation was strongly stimulated by PDGFA but weakly by FGF2 in immortalized lens c...
AbstractLens epithelial cells express many receptor tyrosine kinases (RTKs) that stimulate PI3K–AKT ...
AbstractThe Notch signal transduction pathway regulates the decision to proliferate versus different...
AbstractNotch signaling is essential for proper lens development, however the specific requirements ...
Fibroblast Growth Factor (FGF) is thought to control normal behaviour of lens cells and sustain lens...
Precise regulation of signaling pathways that are involved in cell differentiation is crucial for th...
(A) Schematic diagram of the mammalian lens. PDGFRα is expressed in the lens epithelial cells (blue)...
(A) The PDGFR recruits the p85 subunit of PI3K, which activates AKT signaling by converting PI-4,5-P...
AbstractIn mammals, two spatially and temporally distinct waves of fiber cell differentiation are cr...
Platelet-derived growth factor (PDGF), which governs multiple physiological functions in human lens ...
AbstractLens arises from ectoderm situated next to the optic vesicles. By thickening and invaginatin...
AbstractThe vertebrate lens provides an excellent model to study the mechanisms that regulate termin...
How multiple receptor tyrosine kinases coordinate cell fate determination is yet to be elucidated. W...
How multiple receptor tyrosine kinases coordinate cell fate determination is yet to be elucidated. W...
(A) Deletion of FGF-signaling mediators Frs2 and Shp2 abolished ERK phosphorylation and Jag1 express...
(A–B) AKT phosphorylation was strongly stimulated by PDGFA but weakly by FGF2 in immortalized lens c...
AbstractLens epithelial cells express many receptor tyrosine kinases (RTKs) that stimulate PI3K–AKT ...
AbstractThe Notch signal transduction pathway regulates the decision to proliferate versus different...
AbstractNotch signaling is essential for proper lens development, however the specific requirements ...
Fibroblast Growth Factor (FGF) is thought to control normal behaviour of lens cells and sustain lens...
Precise regulation of signaling pathways that are involved in cell differentiation is crucial for th...
(A) Schematic diagram of the mammalian lens. PDGFRα is expressed in the lens epithelial cells (blue)...
(A) The PDGFR recruits the p85 subunit of PI3K, which activates AKT signaling by converting PI-4,5-P...
AbstractIn mammals, two spatially and temporally distinct waves of fiber cell differentiation are cr...
Platelet-derived growth factor (PDGF), which governs multiple physiological functions in human lens ...
AbstractLens arises from ectoderm situated next to the optic vesicles. By thickening and invaginatin...
AbstractThe vertebrate lens provides an excellent model to study the mechanisms that regulate termin...