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Updated: Jun 8, 2026

Isolation and Culture of Cells from the Nephrogenic Zone of the Embryonic Mouse Kidney
Published on: April 22, 2011
The planar cell polarity gene Vangl2 is required for mammalian kidney-branching morphogenesis and glomerular
Laura L Yates1, Jenny Papakrivopoulou, David A Long
1Mammalian Genetics Unit, Medical Research Council, Harwell, Oxfordshire, UK.
Abstract:
The planar cell polarity (PCP) pathway, incorporating non-canonical Wnt signalling, controls embryonic convergent (CE) extension, polarized cell division and ciliary orientation. It also limits diameters of differentiating renal tubules, with mutation of certain components of the pathway causing cystic kidneys. Mutations in mouse Vangl genes encoding core PCP proteins cause neural tube defects (NTDs) and Vangl2 mutations also impair branching of embryonic mouse lung airways. Embryonic metanephric kidneys also undergo branching morphogenesis and Vangl2 is known to be expressed in ureteric bud/collecting duct and metanephric mesenchymal/nephron lineages. These observations led us to investigate metanephroi in Vangl2 mutant mice, Loop-tail (Lp). Although ureteric bud formation is normal in Vangl2(Lp/Lp) embryos, subsequent in vivo and in vitro branching morphogenesis is impaired. Null mutant kidneys are short, consistent with a CE defect. Differentiating glomerular epithelia express several PCP genes (Vangl1/2, Celsr1, Scrib, Mpk1/2 and Fat4) and glomeruli in Vangl2(Lp/Lp) fetuses are smaller and contain less prominent capillary loops than wild-type littermates. Furthermore, Vangl2(Lp/+) kidneys had modest reduction in glomerular numbers postnatally. Vangl2(Lp/Lp) metanephroi contained occasional dilated tubules but no overt cystic phenotype. These data show for the first time that a PCP gene is required for normal morphogenesis of both the ureteric bud and metanephric mesenchyme-derived structures. It has long been recognized that certain individuals with NTDs are born with malformed kidneys, and recent studies have discovered VANGL mutations in some NTD patients. On the basis of our mutant mouse study, we suggest that PCP pathway mutations should be sought when NTD and renal malformation co-exist.
Insights
Planar cell polarity (PCP) pathway gene Vangl2 is crucial for embryonic kidney development, affecting ureteric bud branching and glomerular formation. Mutations can lead to kidney malformations, suggesting a link with neural tube defects.
Area of Science:
- Developmental Biology
- Genetics
- Cell Biology
Background:
- The planar cell polarity (PCP) pathway regulates embryonic development, including convergent extension and cell polarization.
- Mutations in PCP genes like Vangl cause neural tube defects (NTDs) and affect lung airway branching.
- Vangl2 is expressed in developing kidney structures, suggesting a role in renal morphogenesis.
Purpose of the Study:
- To investigate the role of Vangl2 in embryonic kidney (metanephroi) development.
- To determine if Vangl2 mutations impact ureteric bud branching and glomerular formation.
- To explore the association between PCP pathway mutations and co-occurring NTDs and renal malformations.
Main Methods:
- Analysis of Vangl2 mutant mice (Loop-tail, Lp).
- In vivo and in vitro studies of metanephroi branching morphogenesis.
- Histological examination of kidney structures, including glomeruli and tubules.
Main Results:
- Vangl2 deficiency impairs ureteric bud branching morphogenesis and causes shorter kidneys.
- Glomeruli in Vangl2 mutant fetuses are smaller with less prominent capillary loops.
- While Vangl2 mutant kidneys show some dilated tubules, an overt cystic phenotype is absent.
Conclusions:
- Vangl2 is essential for normal morphogenesis of both ureteric bud and metanephric mesenchyme-derived kidney structures.
- PCP pathway mutations may underlie the co-occurrence of neural tube defects and renal malformations.
- Further investigation of PCP genes is warranted in patients with combined NTDs and kidney anomalies.
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