Genetic Dissection of Cadherin Function during Nephrogenesis
- 1 March 2002
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 22 (5) , 1474-1487
- https://doi.org/10.1128/mcb.22.5.1474-1487.2002
Abstract
The distinct expression of R-cadherin in the induced aggregating metanephric mesenchyme suggests that it may regulate the mesenchymal-epithelial transition during kidney development. To address whether R-cadherin is required for kidney ontogeny, R-cadherin-deficient mice were generated. These mice appeared to be healthy and were fertile, demonstrating that R-cadherin is not essential for embryogenesis. The only kidney phenotype of adult mutant animals was the appearance of dilated proximal tubules, which was associated with an accumulation of large intracellular vacuoles. Morphological analysis of nephrogenesis in R-cadherin−/− mice in vivo and in vitro revealed defects in the development of both ureteric bud-derived cells and metanephric mesenchyme-derived cells. First, the morphology and organization of the proximal parts of the ureteric bud epithelium were altered. Interestingly, these morphological changes correlated with an increased rate of apoptosis and were further supported by perturbed branching and patterning of the ureteric bud epithelium during in vitro differentiation. Second, during in vitro studies of mesenchymal-epithelial conversion, significantly fewer epithelial structures developed from R-cadherin−/− kidneys than from wild-type kidneys. These data suggest that R-cadherin is functionally involved in the differentiation of both mesenchymal and epithelial components during metanephric kidney development. Finally, to investigate whether the redundant expression of other classic cadherins expressed in the kidney could explain the rather mild kidney defects in R-cadherin-deficient mice, we intercrossed R-cadherin−/− mice with cadherin-6−/−, P-cadherin−/−, and N-cadherin+/− mice. Surprisingly, however, in none of the compound knockout strains was kidney development affected to a greater extent than within the individual cadherin knockout strains.Keywords
This publication has 54 references indexed in Scilit:
- The molecular basis of embryonic kidney developmentMechanisms of Development, 1997
- Progression rate of radiation damage to the mouse kidney: a quantitative analysis of experimental data using a simple mathematical model of the nephronInternational Journal of Radiation Biology, 1997
- Cell Adhesion: The Molecular Basis of Tissue Architecture and MorphogenesisPublished by Elsevier ,1996
- Mouse R-Cadherin: Expression during the Organogenesis of Pancreas and Gastrointestinal TractExperimental Cell Research, 1995
- Association of p120, a tyrosine kinase substrate, with E-cadherin/catenin complexes.The Journal of cell biology, 1995
- Distinct cadherin—catenin complexes in Ca2+ dependent cell—cell adhesionFEBS Letters, 1994
- Dynamics of cadherin/catenin complex formation: novel protein interactions and pathways of complex assembly.The Journal of cell biology, 1994
- Disruption of the proto-oncogene int-2 in mouse embryo-derived stem cells: a general strategy for targeting mutations to non-selectable genesNature, 1988
- N-linked oligosaccharides are not involved in the function of a cell-cell binding glycoprotein E-cadherin.Cell Structure and Function, 1986
- Cell-adhesion molecule uvomorulin during kidney developmentDevelopmental Biology, 1985