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Published on: November 17, 2023
Cryptorchidism in mice with an androgen receptor ablation in gubernaculum testis
Elena M Kaftanovskaya1, Zaohua Huang, Agustin M Barbara
1Department of Human and Molecular Genetics, Herbert Wertheim College of Medicine, Florida International University, 11200 SW 8th Street, Miami, Florida 33199, USA.
Abstract:
Androgens play a critical role in the development of the male reproductive system, including the positioning of the gonads. It is not clear, however, which developmental processes are influenced by androgens and what are the target tissues and cells mediating androgen signaling during testicular descent. Using a Cre-loxP approach, we have produced male mice (GU-ARKO) with conditional inactivation of the androgen receptor (Ar) gene in the gubernacular ligament connecting the epididymis to the caudal abdominal wall. The GU-ARKO males had normal testosterone levels but developed cryptorchidism with the testes located in a suprascrotal position. Although initially subfertile, the GU-ARKO males became sterile with age. We have shown that during development, the mutant gubernaculum failed to undergo eversion, a process giving rise to the processus vaginalis, a peritoneal outpouching inside the scrotum. As a result, the cremasteric sac did not form properly, and the testes remained in the low abdominal position. Abnormal development of the cremaster muscles in the GU-ARKO males suggested the participation of androgens in myogenic differentiation; however, males with conditional AR inactivation in the striated or smooth muscle cells had a normal testicular descent. Gene expression analysis showed that AR deficiency in GU-ARKO males led to the misexpression of genes involved in muscle differentiation, cell signaling, and extracellular space remodeling. We therefore conclude that AR signaling in gubernacular cells is required for gubernaculum eversion and outgrowth. The GU-ARKO mice provide a valuable model of isolated cryptorchidism, one of the most common birth defects in newborn boys.
Insights
Androgen signaling in gubernacular cells is crucial for testicular descent in males. Inactivation of the androgen receptor (AR) in these cells causes cryptorchidism, a common birth defect in infant boys.
Area of Science:
- Reproductive Biology
- Developmental Biology
- Endocrinology
Background:
- Androgens are vital for male reproductive system development, including gonad positioning.
- The specific roles of androgens, target tissues, and cells in testicular descent remain unclear.
Purpose of the Study:
- To investigate the role of androgen receptor (AR) signaling in gubernacular cells during testicular descent.
- To elucidate the mechanisms by which androgens influence gubernaculum development and gonad positioning.
Main Methods:
- Generated male mice (GU-ARKO) with conditional inactivation of the androgen receptor (Ar) gene in gubernacular ligament cells using a Cre-loxP approach.
- Analyzed testicular position, fertility, gubernaculum morphology, cremaster muscle development, and gene expression in GU-ARKO mice.
Main Results:
- GU-ARKO males exhibited cryptorchidism with testes in a suprascrotal position, despite normal testosterone levels.
- The mutant gubernaculum failed to evert, leading to improper processus vaginalis and cremasteric sac formation.
- AR deficiency in gubernacular cells resulted in misexpression of genes involved in muscle differentiation, cell signaling, and extracellular remodeling.
Conclusions:
- AR signaling specifically within gubernacular cells is essential for gubernaculum eversion and outgrowth during testicular descent.
- GU-ARKO mice serve as a valuable model for studying isolated cryptorchidism, a frequent congenital anomaly in newborn males.

