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Updated: May 4, 2026

Cytological Analysis of Spermatogenesis: Live and Fixed Preparations of Drosophila Testes
Published on: January 20, 2014
Coordinated activity of Spry1 and Spry2 is required for normal development of the external genitalia
Saunders T Ching1, Gerald R Cunha2, Laurence S Baskin2
1Department of Orofacial Sciences, University of California, San Francisco, United States; Department of Urology, University of California, San Francisco, United States.
Abstract:
Development of the mammalian external genitalia is controlled by a network of signaling molecules and transcription factors. Because FGF signaling plays a central role in this complicated morphogenetic process, we investigated the role of Sprouty genes, which are important intracellular modulators of FGF signaling, during embryonic development of the external genitalia in mice. We found that Sprouty genes are expressed by the urethral epithelium during embryogenesis, and that they have a critical function during urethral canalization and fusion. Development of the genital tubercle (GT), the anlage of the prepuce and glans penis in males and glans clitoris in females, was severely affected in male embryos carrying null alleles of both Spry1 and Spry2. In Spry1(-/-);Spry2(-/-) embryos, the internal tubular urethra was absent, and urothelial morphology and organization was abnormal. These effects were due, in part, to elevated levels of epithelial cell proliferation in Spry1(-/-);Spry2(-/-) embryos. Despite changes in overall organization, terminal differentiation of the urothelium was not significantly affected. Characterization of the molecular pathways that regulate normal GT development confirmed that deletion of Sprouty genes leads to elevated FGF signaling, whereas levels of signaling in other cascades were largely preserved. Together, these results show that levels of FGF signaling must be tightly regulated during embryonic development of the external genitalia in mice, and that this regulation is mediated in part through the activity of Sprouty gene products.
Insights
Sprouty genes regulate FGF signaling crucial for external genitalia development in mice. Their absence disrupts urethral formation and genital tubercle development due to excessive cell proliferation.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Mammalian external genitalia development involves complex signaling networks.
- Fibroblast Growth Factor (FGF) signaling is a key pathway in this morphogenesis.
- Sprouty genes are intracellular modulators of FGF signaling.
Purpose of the Study:
- To investigate the role of Sprouty genes (Spry1 and Spry2) in the embryonic development of external genitalia in mice.
- To understand how Sprouty genes modulate FGF signaling during this process.
Main Methods:
- Analysis of mouse embryos with null alleles for Spry1 and Spry2 (Spry1(-/-);Spry2(-/-)).
- Examination of external genitalia morphology, urethral development, and urothelial organization.
- Assessment of cell proliferation and molecular signaling pathways, including FGF signaling.
Main Results:
- Sprouty genes are expressed in the urethral epithelium and are critical for urethral canalization and fusion.
- Spry1(-/-);Spry2(-/-) embryos exhibited absent internal urethras and abnormal urothelial morphology.
- Genital tubercle development was severely affected, with elevated epithelial cell proliferation observed.
- Deletion of Sprouty genes led to elevated FGF signaling, while other signaling pathways remained largely unaffected.
Conclusions:
- Sprouty gene products are essential for regulating FGF signaling during external genitalia development in mice.
- Tight regulation of FGF signaling by Sprouty genes is critical for normal urethral and genital tubercle morphogenesis.
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