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Updated: Jun 11, 2026

Isolation and Culture of Cells from the Nephrogenic Zone of the Embryonic Mouse Kidney
Published on: April 22, 2011
STAT1 activation regulates proliferation and differentiation of renal progenitors
Honghe Wang1, Yili Yang, Nirmala Sharma
1Cancer and Developmental Biology Laboratory, Center for Cancer Research, National Cancer Institute, Frederick, MD 21702-1201, USA.
Abstract:
We have shown previously that activation of STAT1 contributes to the pathogenesis of Wilms tumor. This neoplasm caricatures metanephric development and is believed to originate from embryonic renal mesenchymal progenitors that lose their ability to undergo mesenchymal-epithelial transition (MET). Therefore, we hypothesized that STAT1 is also activated and functional during metanephric development. Here we have demonstrated that both STAT1 and STAT3 are activated during normal development of the embryonic kidney. Furthermore, activation of STAT1 stimulated the proliferation of metanephric mesenchymal cells, but it prevented MET and tubulogenesis induced by leukemia inhibitory factor, which preferentially activates STAT3. Consistent with its negative regulation of metanephric mesenchymal differentiation, inhibition of STAT1 activation with protein kinase CK2 inhibitor TBB or RNAi-mediated knockdown of STAT1 promoted differentiation of metanephric progenitors and abolished the effect of cytokine-induced STAT1 activation in these cells. Additionally, a cell-permeable peptide that inhibits STAT1-mediated transactivation by targeting the STAT1 N-domain also blocked cytokine-induced STAT1-dependent proliferation in metanephric progenitors and promoted LIF-induced MET and tubulogenesis. Finally, the STAT1 peptide inhibitor caused the down regulation of survival/anti-apoptotic factors, Mcl-1 and Hsp-27, and induced apoptosis in renal tumor cells with constitutively active STAT1, indicating that STAT1 is required for these cells to survive. These findings show that both metanephric progenitors and renal tumor cells utilize a STAT1-dependent mechanism for growth or survival.
Insights
Signal transducer and activator of transcription 1 (STAT1) activation promotes embryonic kidney cell proliferation and Wilms tumor growth. Inhibiting STAT1 enhances differentiation and induces apoptosis in renal tumor cells.
Area of Science:
- Developmental Biology
- Molecular Biology
- Oncology
Background:
- Wilms tumor pathogenesis involves Signal transducer and activator of transcription 1 (STAT1) activation.
- Wilms tumor arises from embryonic renal mesenchymal progenitors failing to undergo mesenchymal-epithelial transition (MET).
- STAT1's role in normal metanephric development was previously unknown.
Purpose of the Study:
- To investigate STAT1 and STAT3 activation during embryonic kidney development.
- To determine the functional role of STAT1 in metanephric mesenchymal cell proliferation, MET, and tubulogenesis.
- To assess the therapeutic potential of STAT1 inhibition in Wilms tumor.
Main Methods:
- Analysis of STAT1 and STAT3 activation in embryonic kidneys.
- Inhibition of STAT1 using a protein kinase CK2 inhibitor (TBB) and RNA interference (RNAi).
- Treatment with a cell-permeable peptide inhibitor targeting STAT1 transactivation.
- Assessment of cell proliferation, MET, tubulogenesis, apoptosis, and expression of Mcl-1 and Hsp-27.
Main Results:
- Both STAT1 and STAT3 are activated during normal embryonic kidney development.
- STAT1 activation stimulates metanephric mesenchymal cell proliferation but inhibits MET and tubulogenesis.
- STAT1 inhibition promotes differentiation and blocks STAT1-dependent proliferation.
- STAT1 inhibition induces apoptosis in Wilms tumor cells by downregulating Mcl-1 and Hsp-27.
Conclusions:
- STAT1 plays a critical role in both normal metanephric development and Wilms tumor pathogenesis.
- STAT1 promotes proliferation and survival of metanephric progenitors and renal tumor cells.
- Targeting STAT1 offers a potential therapeutic strategy for Wilms tumor.
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