Bmp7 functions via a polarity mechanism to promote cloacal septation
Kun Xu1, Xinyu Wu, Ellen Shapiro
1Department of Urology, School of Medicine, New York University, New York, New York, United States of America.
Insights
Bone morphogenetic protein 7 (Bmp7) signaling in the cloacal endoderm is crucial for separating the urinary and digestive systems. Loss of Bmp7 disrupts this process, leading to developmental defects like rectourethral fistulas.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Cloacal septation is essential for separating the embryonic urinary and digestive tracts.
- Defects in cloacal development cause rectourethral fistulas, occurring in 1 in 5,000 live births.
- Cellular mechanisms of cloacal septation are poorly understood.
Purpose of the Study:
- To investigate the role of Bone morphogenetic protein 7 (Bmp7) in cloacal septation.
- To elucidate the cellular and molecular pathways involved in cloacal partitioning.
Main Methods:
- Analysis of Bmp7 null and control mouse embryos.
- TUNEL and immunofluorescent staining.
- Immunological methods to assess signaling pathways.
- Confocal and 3D imaging of mitotic chromosome bundles.
- Immunohistochemical analysis of human fetal sections.
Main Results:
- Loss of Bmp7 function arrests cloacal septation.
- Bmp7 signaling in the cloacal endoderm is critical for partitioning.
- Bmp7 loss decreases endoderm cell survival and delays differentiation.
- Bmp7 activates the c-Jun N-terminal kinase (JNK) pathway.
- Bmp7/JNK signaling regulates mitotic angles in the cloacal endoderm.
- BMP/phospho-SMAD and JNK pathways are conserved in human cloacal development.
Conclusions:
- Bmp7/JNK signaling drives cloacal endoderm remodeling for topological separation of systems.
- This study highlights the importance of Bmp and JNK signaling in cloacal development and rectourethral malformations.
Background:
During normal development in human and other placental mammals, the embryonic cloacal cavity separates along the axial longitudinal plane to give rise to the urethral system, ventrally, and the rectum, dorsally. Defects in cloacal development are very common and present clinically as a rectourethral fistula in about 1 in 5,000 live human births. Yet, the cellular mechanisms of cloacal septation remain poorly understood.
Methodology/Principal Findings:
We previously detected Bone morphogenetic protein 7 (Bmp7) expression in the urorectal mesenchyme (URM), and have shown that loss of Bmp7 function results in the arrest of cloacal septation. Here, we present evidence that cloacal partitioning is driven by Bmp7 signaling in the cloacal endoderm. We performed TUNEL and immunofluorescent analysis on cloacal sections from Bmp7 null and control littermate embryos. We found that loss of Bmp7 results in a dramatic decrease in the endoderm survival and a delay in differentiation. We used immunological methods to show that Bmp7 functions by activating the c-Jun N-terminal kinase (JNK) pathway. We carried out confocal and 3D imaging analysis of mitotic chromosome bundles to show that during normal septation cells in the cloacal endoderm divide predominantly in the apical-basal direction. Loss of Bmp7/JNK signaling results in randomization of mitotic angles in the cloacal endoderm. We also conducted immunohistochemical analysis of human fetal sections to show that BMP/phospho-SMAD and JNK pathways function in the human cloacal region similar as in the mouse.
Conclusion/Significance:
Our results strongly indicate that Bmp7/JNK signaling regulates remodeling of the cloacal endoderm resulting in a topological separation of the urinary and digestive systems. Our study points to the importance of Bmp and JNK signaling in cloacal development and rectourethral malformations.
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