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Updated: Jun 15, 2026

Isolation and Culture of Cells from the Nephrogenic Zone of the Embryonic Mouse Kidney
Published on: April 22, 2011
Genomic characterization of Wilms' tumor suppressor 1 targets in nephron progenitor cells during kidney development
Sunny Hartwig1, Jacqueline Ho, Priyanka Pandey
1Department of Medicine, Children's Hospital Boston; Department of Pediatrics, Harvard Medical School, Boston, MA 02115, USA.
Abstract:
The Wilms' tumor suppressor 1 (WT1) gene encodes a DNA- and RNA-binding protein that plays an essential role in nephron progenitor differentiation during renal development. To identify WT1 target genes that might regulate nephron progenitor differentiation in vivo, we performed chromatin immunoprecipitation (ChIP) coupled to mouse promoter microarray (ChIP-chip) using chromatin prepared from embryonic mouse kidney tissue. We identified 1663 genes bound by WT1, 86% of which contain a previously identified, conserved, high-affinity WT1 binding site. To investigate functional interactions between WT1 and candidate target genes in nephron progenitors, we used a novel, modified WT1 morpholino loss-of-function model in embryonic mouse kidney explants to knock down WT1 expression in nephron progenitors ex vivo. Low doses of WT1 morpholino resulted in reduced WT1 target gene expression specifically in nephron progenitors, whereas high doses of WT1 morpholino arrested kidney explant development and were associated with increased nephron progenitor cell apoptosis, reminiscent of the phenotype observed in Wt1(-/-) embryos. Collectively, our results provide a comprehensive description of endogenous WT1 target genes in nephron progenitor cells in vivo, as well as insights into the transcriptional signaling networks controlled by WT1 that might direct nephron progenitor fate during renal development.
Insights
Researchers identified WT1 target genes crucial for kidney development. Knocking down WT1 in nephron progenitors disrupted gene expression and led to developmental arrest and cell death, revealing WT1
Area of Science:
- Developmental Biology
- Genetics
- Molecular Biology
Background:
- The Wilms' tumor suppressor 1 (WT1) gene is vital for kidney development, regulating nephron progenitor differentiation.
- Understanding WT1's regulatory network is key to deciphering renal development processes.
Purpose of the Study:
- To identify endogenous WT1 target genes in vivo within nephron progenitor cells.
- To investigate the functional role of WT1 in regulating nephron progenitor differentiation and survival.
Main Methods:
- Chromatin immunoprecipitation coupled with mouse promoter microarray (ChIP-chip) was used to identify WT1-bound genes in embryonic mouse kidneys.
- A modified WT1 morpholino loss-of-function model in embryonic mouse kidney explants was employed to assess WT1's functional impact on target gene expression and nephron progenitor cells.
Main Results:
- WT1 binds to 1663 genes, with 86% possessing conserved, high-affinity WT1 binding sites.
- Loss of WT1 function in nephron progenitors led to reduced target gene expression, developmental arrest, and increased apoptosis, mirroring Wt1(-/-) phenotypes.
Conclusions:
- This study provides a comprehensive catalog of endogenous WT1 target genes in vivo.
- WT1 controls critical transcriptional networks that dictate nephron progenitor cell fate during renal development.
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