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Updated: Oct 29, 2025

Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
Stage-dependent function of Wnt5a during male external genitalia development
Mellissa C Alcantara1, Kentaro Suzuki1, Alvin R Acebedo1
1Department of Developmental Genetics, Institute of Advanced Medicine, Wakayama Medical University, Wakayama, Japan.
Abstract:
External genitalia development in mice involves multiple developmental processes under the regulation of various signaling pathways. Wnt5a, one of the major Wnt ligands, is a crucial developmental regulator of outgrowing organs such as the limb, the mandible, and the external genitalia. Defects in Wnt5a signaling have been linked to Robinow syndrome, a genetic disorder in which male patients manifest a micropenis and defective urethral tube formation. Whereas Wnt5a is required for cell proliferation during embryonic external genitalia outgrowth, its role for urethral tube formation has yet to be understood. Here, we show that Wnt5a contributes to urethral tube formation as well as external genitalia outgrowth. Wnt5a is expressed in the embryonic external genitalia mesenchyme, and mesenchymal-specific conditional Wnt5a knockout mice resulted in hypospadias-like urethral defects. Early deletion of Wnt5a at E10.5 showed severe defects in both external genitalia outgrowth and urethral tube formation, along with reduced cell proliferation. The severe urethral tube defect persisted during later timing deletion of Wnt5a (E13.5). Further analyses revealed that loss of Wnt5a disrupted cell polarity and led to a reduction of the phosphorylated myosin light chain and the focal adhesion protein, vinculin. Altogether, these results suggest that Wnt5a coordinates cell proliferation and directed cell migration in a stage-dependent manner during male external genitalia development. Furthermore, Wnt5a may regulate cell polarity, focal adhesion formation, and cell contractility, leading to directed cell migration during male-type urethral formation in a manner that has not been reported in other organ fusion events.
Insights
Wnt5a is essential for male external genitalia development and urethral tube formation in mice. Loss of Wnt5a disrupts cell proliferation, polarity, and migration, leading to hypospadias-like defects.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Wnt5a is a key regulator in embryonic organ development, including external genitalia.
- Wnt5a signaling defects are associated with Robinow syndrome, causing micropenis and urethral abnormalities.
- The specific role of Wnt5a in urethral tube formation remains unclear.
Purpose of the Study:
- To investigate the role of Wnt5a in external genitalia outgrowth and urethral tube formation.
- To elucidate the molecular mechanisms by which Wnt5a influences male genitalia development.
Main Methods:
- Mesenchymal-specific conditional Wnt5a knockout mouse models were generated.
- Wnt5a deletion was performed at different embryonic stages (E10.5 and E13.5).
- Analysis of external genitalia morphology, cell proliferation, cell polarity, and focal adhesion proteins.
Main Results:
- Conditional Wnt5a knockout mice exhibited hypospadias-like urethral defects.
- Early Wnt5a deletion (E10.5) severely impaired both external genitalia outgrowth and urethral tube formation, with reduced cell proliferation.
- Loss of Wnt5a disrupted cell polarity, reduced phosphorylated myosin light chain and vinculin, affecting cell migration.
Conclusions:
- Wnt5a is crucial for both external genitalia outgrowth and urethral tube formation in a stage-dependent manner.
- Wnt5a regulates cell proliferation and directed cell migration during male external genitalia development.
- Wnt5a influences cell polarity, focal adhesion, and contractility, facilitating directed cell migration in male urethral development.
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