AbstractThe c-ret gene encodes a receptor tyrosine kinase (RET) essential for the development of the kidney and enteric nervous system. Activation of RET requires the secreted neurotrophin GDNF (glial cell line-derived neurotrophic factor) and its high affinity receptor, a glycosyl phosphatidylinositol-linked cell surface protein GFRα1. In the developing kidney, RET, GDNF, and GFRα1 are all required for directed outgrowth and branching morphogenesis of the ureteric bud epithelium. Using MDCK renal epithelial cells as a model system, activation of RET induces cell migration, scattering, and formation of filopodia and lamellipodia. RET-expressing MDCK cells are able to migrate toward a localized source of GDNF. In this report, the intracellul...
The mammalian kidney is a complex structure composed of many highly differentiated cell types. The s...
The initiating step in metanephric kidney development is outgrowth of the ureteric bud (UB) from the...
Molecular mechanisms that lead to congenital anomalies of kidneys and the lower urinary tract (CAKUT...
Ret is a receptor tyrosine kinase which binds GDNF*, in partnership with GDNFRα**, a glycosylphospha...
AbstractThe RET receptor tyrosine kinase is activated by GDNF and controls outgrowth and invasion of...
RET is a tyrosine kinase receptor that induces cell survival, proliferation and migration. When bou...
AbstractWhile GDNF signaling through the Ret receptor is critical for kidney development, its specif...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
The receptor tyrosine kinase RET functions during the development of the kidney and the enteric nerv...
Summary A significant fraction of mice deficient in either glial cell-derived neurotrophic factor (G...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
GDNF signaling through the Ret receptor tyrosine kinase (RTK) is required for ureteric bud (UB) bran...
The glial cell line-derived neurotrophic factor (GDNF)/ rearrangement during transfection, tyrosine ...
The mammalian kidney is a complex structure composed of many highly differentiated cell types. The s...
The initiating step in metanephric kidney development is outgrowth of the ureteric bud (UB) from the...
Molecular mechanisms that lead to congenital anomalies of kidneys and the lower urinary tract (CAKUT...
Ret is a receptor tyrosine kinase which binds GDNF*, in partnership with GDNFRα**, a glycosylphospha...
AbstractThe RET receptor tyrosine kinase is activated by GDNF and controls outgrowth and invasion of...
RET is a tyrosine kinase receptor that induces cell survival, proliferation and migration. When bou...
AbstractWhile GDNF signaling through the Ret receptor is critical for kidney development, its specif...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
The receptor tyrosine kinase RET functions during the development of the kidney and the enteric nerv...
Summary A significant fraction of mice deficient in either glial cell-derived neurotrophic factor (G...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
Branching morphogenesis of the epithelial ureteric bud forms the renal collecting duct system and is...
GDNF signaling through the Ret receptor tyrosine kinase (RTK) is required for ureteric bud (UB) bran...
The glial cell line-derived neurotrophic factor (GDNF)/ rearrangement during transfection, tyrosine ...
The mammalian kidney is a complex structure composed of many highly differentiated cell types. The s...
The initiating step in metanephric kidney development is outgrowth of the ureteric bud (UB) from the...
Molecular mechanisms that lead to congenital anomalies of kidneys and the lower urinary tract (CAKUT...