ZEB2 signaling is essential for ureteral smooth muscle cell differentiation and maintenance

Sudhir Kumar1, Xueping Fan1, Harshita Pattam1

  • 1Nephrology Section, Department of Medicine, Boston University Chobanian & Avedisian School of Medicine, Boston Medical Center, Boston, Massachusetts, 02118, USA.

Insights

Mowat-Wilson Syndrome (MWS) is linked to ZEB2 mutations. This study reveals ZEB2 is crucial for normal ureter development, as its absence impairs smooth muscle cell formation, leading to urinary tract abnormalities.

Area of Science:

  • Developmental Biology
  • Genetics
  • Urology

Background:

  • Mowat-Wilson Syndrome (MWS) is a congenital anomaly syndrome caused by ZEB2 mutations.
  • Congenital anomalies of the kidney and urinary tract (CAKUT) are observed in MWS patients.
  • The role of ZEB2 in urinary tract development and CAKUT pathogenesis is not well understood.

Purpose of the Study:

  • To investigate the role of ZEB2 in mouse ureter development.
  • To elucidate the cellular and molecular mechanisms underlying CAKUT in MWS.

Main Methods:

  • Analyzed ZEB2 protein expression in developing mouse ureters.
  • Generated Zeb2 ureteral mesenchyme-specific conditional knockout (cKO) mice.
  • Examined urinary tract phenotypes and analyzed ureteral cell-specific markers (TAGLN, ACTA2, FOXD1, POSTN, CDH1, TBX18, SOX9).

Main Results:

  • ZEB2 is expressed in TBX18+ ureteral mesenchymal cells during development.
  • Zeb2 cKO mice exhibit hydroureter, hydronephrosis, obstructive uropathy, kidney failure, and early mortality.
  • Deletion of Zeb2 disrupts ureteral smooth muscle cell layer formation, expands tunica adventitia, and reduces urothelium; alters TBX18 and SOX9 expression.

Conclusions:

  • ZEB2 is essential for normal ureter development, particularly for differentiating ureteral mesenchymal cells into smooth muscle cells.
  • This study provides insights into the mechanisms of urinary tract abnormalities in Mowat-Wilson Syndrome.