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Guided Differentiation of Mature Kidney Podocytes from Human Induced Pluripotent Stem Cells Under Chemically Defined Conditions
Published on: July 2, 2020
FOXC2 and WT1 regulate transcriptional reprogramming during the podocyte response to injury
Sandrine Ettou1,2, Anya Greenberg3, Sangyoon Lee4
1Department of Urology, Boston Children's Hospital, Boston, Massachusetts, USA.
Abstract:
Transcriptional reprogramming has an important role in kidney glomerular disease. Using in vivo murine models of podocyte injury, we studied the roles of the FOXC2 and WT1 transcription factors (TFs) in podocyte injury. Podocytes are a crucial cell type of glomeruli, the filtration units of each nephron. Podocyte injury is often the incipient event leading to chronic kidney disease. It is well established that the TFs FOXC2 and WT1 are required in podocytes to maintain the glomerular filtration barrier. Their role in the response to injury is less well understood. Here, we tested the hypothesis that FOXC2 and WT1 act together to mediate transcriptional reprogramming in response to podocyte injury. Similarly to that of WT1, genome-wide FOXC2 binding to target genes is dynamic during the course of injury, initially increasing, but late in injury there is a dramatic decrease in FOXC2 expression and in its binding to target genes. Podocyte-specific inactivation of FoxC2 or Wt1 in adult mice limits the transcriptional response to injury. Correlating FOXC2 and WT1 ChIP-seq analyses demonstrated that they co-bind many genes expressed in podocytes. Thus, reprogramming the transcriptome involves dynamic changes in the binding of FOXC2 and WT1 to their target genes during a reparative injury response.
Insights
Transcription factors FOXC2 and WT1 dynamically regulate gene expression in podocytes during kidney injury. Their coordinated action is crucial for the transcriptional response to podocyte damage and kidney disease progression.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Kidney glomerular disease involves transcriptional reprogramming in podocytes.
- Podocyte injury is an early event in chronic kidney disease.
- Transcription factors FOXC2 and WT1 are essential for maintaining the glomerular filtration barrier.
Purpose of the Study:
- To investigate the roles of FOXC2 and WT1 in podocyte injury response.
- To test the hypothesis that FOXC2 and WT1 collaborate in transcriptional reprogramming during podocyte injury.
Main Methods:
- In vivo murine models of podocyte injury.
- Genome-wide chromatin immunoprecipitation sequencing (ChIP-seq) for FOXC2 and WT1.
- Podocyte-specific gene inactivation studies.
Main Results:
- FOXC2 binding to target genes dynamically changes during kidney injury.
- Late-stage injury shows decreased FOXC2 expression and binding.
- Simultaneous inactivation of FoxC2 or Wt1 in podocytes impairs the transcriptional response to injury.
- FOXC2 and WT1 were found to co-bind numerous podocyte genes.
Conclusions:
- FOXC2 and WT1 work together to mediate transcriptional reprogramming in response to podocyte injury.
- Dynamic changes in FOXC2 and WT1 binding are key to the reparative transcriptional response in podocytes.
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