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Isolation and Culture of Cells from the Nephrogenic Zone of the Embryonic Mouse Kidney
Published on: April 22, 2011
β-catenin regulates the formation of multiple nephron segments in the mouse kidney
Patrick Deacon1,2, Charles W Concodora1,2,3, Eunah Chung1,2
1Division of Pediatric Urology and Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, 45229, USA.
Abstract:
The nephron is composed of distinct segments that perform unique physiological functions. Little is known about how multipotent nephron progenitor cells differentiate into different nephron segments. It is well known that β-catenin signaling regulates the maintenance and commitment of mesenchymal nephron progenitors during kidney development. However, it is not fully understood how it regulates nephron segmentation after nephron progenitors undergo mesenchymal-to-epithelial transition. To address this, we performed β-catenin loss-of-function and gain-of-function studies in epithelial nephron progenitors in the mouse kidney. Consistent with a previous report, the formation of the renal corpuscle was defective in the absence of β-catenin. Interestingly, we found that epithelial nephron progenitors lacking β-catenin were able to form presumptive proximal tubules but that they failed to further develop into differentiated proximal tubules, suggesting that β-catenin signaling plays a critical role in proximal tubule development. We also found that epithelial nephron progenitors lacking β-catenin failed to form the distal tubules. Expression of a stable form of β-catenin in epithelial nephron progenitors blocked the proper formation of all nephron segments, suggesting tight regulation of β-catenin signaling during nephron segmentation. This work shows that β-catenin regulates the formation of multiple nephron segments along the proximo-distal axis of the mammalian nephron.
Insights
Beta-catenin signaling is crucial for kidney development, regulating nephron segmentation. This study reveals its role in proximal and distal tubule formation after mesenchymal-to-epithelial transition in mouse kidneys.
Area of Science:
- Nephrology
- Developmental Biology
- Molecular Biology
Background:
- Nephron segmentation is vital for kidney function.
- Beta-catenin signaling is known to regulate early kidney development.
- Its role in post-mesenchymal-to-epithelial transition nephron segmentation is unclear.
Purpose of the Study:
- Investigate the role of beta-catenin signaling in nephron segmentation.
- Determine how beta-catenin regulates differentiation of epithelial nephron progenitors.
- Clarify beta-catenin's function along the proximo-distal axis of the nephron.
Main Methods:
- Performed beta-catenin loss-of-function and gain-of-function studies.
- Utilized mouse models with genetic manipulation of beta-catenin in epithelial nephron progenitors.
- Analyzed nephron segment formation and differentiation.
Main Results:
- Absence of beta-catenin impaired renal corpuscle formation.
- Epithelial nephron progenitors lacking beta-catenin formed presumptive proximal tubules but failed differentiation.
- Beta-catenin deficiency also prevented distal tubule formation.
- Overexpression of stable beta-catenin disrupted formation of all nephron segments.
Conclusions:
- Beta-catenin signaling is essential for proximal and distal tubule development.
- Tight regulation of beta-catenin is required for proper nephron segmentation.
- Beta-catenin controls the formation of multiple nephron segments along the proximo-distal axis.
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