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April 24, 2026Biochemical Journal0 citationsOpen Access

BMP4 signaling regulates the expression of signals and transcription factors for coordinated cytodifferentiation in the murine ureter

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LDLena DeuperNHNicolas HenseABAnja Beckers

Key Points

  • This research aims to understand how BMP4 signaling influences gene expression during cytodifferentiation in the ureter.
  • Conducted transcriptional profiling of ureters with Bmp4 depletion and BMP4 signaling inhibition.
  • Analyzed the expression of specific transcription factors in both epithelial and mesenchymal tissues.
  • Utilized conditional gene targeting of Smad4 to explore signaling pathways.
  • Reduced expression of key transcription factors was observed in Bmp4-deficient ureters.
  • Direct BMP4 signaling was necessary for the expression of several important genes related to cytodifferentiation.
  • BMP4's role in activating transcription factors involves SMAD effectors in both ureteral tissues.

Abstract

Mutations in BMP4 have been associated with malformations of the urinary tract in human patients. Genetic studies in mice have shown that these defects are linked to the expression of Bmp4 in the mesenchymal primordium of the ureter, where it acts as a critical signal for coordinated cytodifferentiation of the mesenchymal and epithelial tissues. Here, we used unbiased transcriptional profiling of ureters with genetic depletion of Bmp4 and pharmacological inhibition of BMP4 signaling to decipher the gene regulatory network controlled by BMP4 in the early ureter, focusing on transcription factors as possible drivers of cytodifferentiation. We show that in Bmp4-deficient ureters, expression of Grhl3, Msx2, Pparg, Trp63 and Foxa1 in the epithelial compartment, and of Gata6, Hopx, Id2, Id4, Myocd, Snai1 and Tbx18 in the mesenchymal primordium is reduced. Expression of Msx2, Pparg, Gata6, Id genes, Tbx18 and Snai1 requires direct BMP4 signaling input, whereas reduced expression of the other genes is likely due to secondary changes, including increased retinoic acid signaling. Conditional gene targeting of Smad4 revealed that BMP4-dependent activation of transcription factor genes is mediated in part by SMAD effectors in both ureteral tissues. Thus, our work links BMP4 (signaling) to known transcriptional regulators of ureteral cytodifferentiation and uncovers additional factors that may be relevant to this program.

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Cite This Study

Deuper et al. (2026) studied this question.

synapsesocial.com/papers/69eb0961553a5433e34b3d51https://doi.org/10.1042/bcj20260126
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