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Impairment of spermatogenesis in mice lacking a functional aromatase (cyp 19) gene
K M Robertson1, L O'Donnell, M E Jones
1Prince Henry's Institute of Medical Research, Monash Medical Centre, Clayton, Victoria 3168, Australia.
Abstract:
It is well established that spermatogenesis is controlled by gonadotrophins and testosterone. However, a role for estrogens in male reproduction recently was suggested in adult mice deficient in estrogen receptor alpha. These mice became infertile primarily because of an interruption of fluid reabsorption by the efferent ductules of the epididymis, thus leading to a disruption of the seminiferous epithelium [Hess, R. A., Bunick, D., Lee, K. H., Bahr, J., Taylor, J. A., Korach, K. S., and Lubahn, D. B. (1997) Nature (London) 390, 509-512]. Despite the demonstration of the aromatase enzyme, which converts androgens to estrogens, and estrogen receptors within the rodent seminiferous epithelium, the role of aromatase and estrogen in germ cell development is unknown. We have investigated spermatogenesis in mice that lack aromatase because of the targeted disruption of the cyp19 gene (ArKO). Male mice deficient in aromatase were initially fertile but developed progressive infertility, until their ability to sire pups was severely impaired. The mice deficient in aromatase developed disruptions to spermatogenesis between 4.5 months and 1 year, despite no decreases in gonadotrophins or androgens. Spermatogenesis primarily was arrested at early spermiogenic stages, as characterized by an increase in apoptosis and the appearance of multinucleated cells, and there was a significant reduction in round and elongated spermatids, but no changes in Sertoli cells and earlier germ cells. In addition, Leydig cell hyperplasia/hypertrophy was evident, presumably as a consequence of increased circulating luteinizing hormone. Our findings indicate that local expression of aromatase is essential for spermatogenesis and provide evidence for a direct action of estrogen on male germ cell development and thus fertility.
Insights
Estrogen is crucial for male fertility. Mice lacking aromatase, the enzyme that produces estrogen, showed impaired spermatogenesis and infertility, indicating estrogen
Area of Science:
- Reproductive Biology
- Endocrinology
- Molecular Genetics
Background:
- Spermatogenesis is regulated by gonadotrophins and testosterone.
- Estrogen's role in male reproduction was recently suggested by studies on estrogen receptor alpha-deficient mice.
- The function of aromatase and estrogen in germ cell development remains unclear.
Purpose of the Study:
- To investigate the role of aromatase in spermatogenesis and male fertility.
- To determine if estrogen directly impacts male germ cell development.
Main Methods:
- Generation and analysis of aromatase-deficient (ArKO) mice lacking the cyp19 gene.
- Assessment of fertility, spermatogenesis, germ cell apoptosis, and Leydig cell morphology in ArKO mice.
- Measurement of gonadotrophin and androgen levels.
Main Results:
- Aromatase-deficient mice exhibited progressive infertility and impaired spermatogenesis, arrested at early spermiogenic stages.
- Increased germ cell apoptosis and multinucleated cells were observed, with a reduction in round and elongated spermatids.
- Leydig cell hyperplasia/hypertrophy occurred without changes in gonadotrophin or androgen levels.
Conclusions:
- Local aromatase expression is essential for successful spermatogenesis in mice.
- Estrogen plays a direct role in male germ cell development and overall fertility.
- Aromatase deficiency leads to infertility through disruption of spermatogenesis.