Mechanisms controlling ureter lenght and the position of the kidney are poorly understood. Glial cellline derived neurotrophic factor (GDNF) induced RET signaling is critical for ureteric bud outgrowth, but the function of endogenous GDNF in further renal differentiation and urogenital system development remains discursive. Here we analyzed mice where 3' untranslated region (UTR) of GDNF is replaced with sequence less responsive to microRNA-mediated regulation, leading to increased GDNF expression specifically in cells naturally transcribing Gdnf. We demonstrate that increased Gdnf leads to short ureters in kidneys located in an abnormally caudal position thus resembling human pelvic kidneys. High GDNF levels expand collecting ductal progen...
Ret is a receptor tyrosine kinase which binds GDNF*, in partnership with GDNFRα**, a glycosylphospha...
Summary A significant fraction of mice deficient in either glial cell-derived neurotrophic factor (G...
AbstractThe polycystic kidney disease (PKD1) gene-encoded protein, polycystin-1, is developmentally ...
Mechanisms controlling ureter lenght and the position of the kidney are poorly understood. Glial cel...
AbstractThe secreted signaling molecule GDNF is expressed in the metanephric mesenchyme and has rece...
Nephron endowment in glial cell line-derived neurotrophic factor (GDNF) heterozygous mice.Background...
AbstractBranching of ureteric bud-derived epithelial tubes is a key morphogenetic process that shape...
AbstractKidney development occurs in a stereotypic position along the body axis. It begins when a si...
AbstractGrowth/differentiation factor 11 (Gdf11) is a transforming growth factor β family member pre...
The glial cell line-derived neurotrophic factor (GDNF)/ rearrangement during transfection, tyrosine ...
Nephron endowment, defined during the fetal period, dictates renal and related cardiovascular health...
AbstractROBO2 plays a key role in regulating ureteric bud (UB) formation in the embryo, with mutatio...
Molecular mechanisms that lead to congenital anomalies of kidneys and the lower urinary tract (CAKUT...
AbstractMesenchymal–epithelial interactions are an important source of information for pattern forma...
<p><b>(A)</b> Schematic representation of <i>Gdnf</i> expression (blue) in the mouse kidney at E11.5...
Ret is a receptor tyrosine kinase which binds GDNF*, in partnership with GDNFRα**, a glycosylphospha...
Summary A significant fraction of mice deficient in either glial cell-derived neurotrophic factor (G...
AbstractThe polycystic kidney disease (PKD1) gene-encoded protein, polycystin-1, is developmentally ...
Mechanisms controlling ureter lenght and the position of the kidney are poorly understood. Glial cel...
AbstractThe secreted signaling molecule GDNF is expressed in the metanephric mesenchyme and has rece...
Nephron endowment in glial cell line-derived neurotrophic factor (GDNF) heterozygous mice.Background...
AbstractBranching of ureteric bud-derived epithelial tubes is a key morphogenetic process that shape...
AbstractKidney development occurs in a stereotypic position along the body axis. It begins when a si...
AbstractGrowth/differentiation factor 11 (Gdf11) is a transforming growth factor β family member pre...
The glial cell line-derived neurotrophic factor (GDNF)/ rearrangement during transfection, tyrosine ...
Nephron endowment, defined during the fetal period, dictates renal and related cardiovascular health...
AbstractROBO2 plays a key role in regulating ureteric bud (UB) formation in the embryo, with mutatio...
Molecular mechanisms that lead to congenital anomalies of kidneys and the lower urinary tract (CAKUT...
AbstractMesenchymal–epithelial interactions are an important source of information for pattern forma...
<p><b>(A)</b> Schematic representation of <i>Gdnf</i> expression (blue) in the mouse kidney at E11.5...
Ret is a receptor tyrosine kinase which binds GDNF*, in partnership with GDNFRα**, a glycosylphospha...
Summary A significant fraction of mice deficient in either glial cell-derived neurotrophic factor (G...
AbstractThe polycystic kidney disease (PKD1) gene-encoded protein, polycystin-1, is developmentally ...