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Testicular cAMP responsive element modulator (CREM) protein is expressed in round spermatids but is absent or reduced
G F Weinbauer1, R Behr, M Bergmann
1Institute of Reproductive Medicine of the University, Münster, Germany.
Abstract:
Mice lacking the functional cAMP responsive element modulator (CREM) gene, a component of cAMP-mediated signal transduction, exhibit a specific arrest of round spermatid development although follicle stimulating hormone (FSH) and androgen secretion are not impaired. We studied testicular expression of CREM protein by immunocytochemistry in four patients with complete spermatogenesis (obstructive azoospermia), in 20 infertile patients with round spermatid maturation arrest (n = 10) or mixed atrophy (n = 10) and in six prostate cancer patients undergoing orchidectomy. Concentrations of testosterone were below normal in three patients. Concentrations of luteinizing hormone (LH) were lowered in two patients and elevated in one patient. FSH concentrations were above normal in ten patients. During normal spermatogenesis, CREM was expressed in nuclei of round spermatids in stages I-III of spermatogenesis but not in elongating spermatids. Western blot analysis of testes from prostate cancer patients indicated a major CREM band of approximately 35 kDa. Among patients with predominant round spermatid maturation arrest, CREM expression was significantly reduced (P < 0.05) or undetectable as revealed by quantitative image analysis. CREM-negative spermatids failed to progress beyond stage III of spermatogenesis. Our observations suggest a role for CREM in human spermatid development and raise the possibility that altered CREM expression could be associated with spermatid maturation defects in some cases of idiopathic male infertility.
Insights
Reduced cAMP responsive element modulator (CREM) expression in testes is linked to round spermatid maturation arrest in infertile men. This finding suggests CREM plays a crucial role in human spermatid development.
Area of Science:
- Reproductive biology
- Molecular endocrinology
- Spermatogenesis research
Background:
- cAMP-mediated signal transduction is vital for cellular processes.
- The cAMP responsive element modulator (CREM) gene is a key component of this pathway.
- CREM gene knockout in mice causes round spermatid development arrest.
Purpose of the Study:
- To investigate the role of CREM protein expression in human spermatogenesis.
- To determine if altered CREM expression is associated with male infertility, specifically round spermatid maturation arrest.
Main Methods:
- Immunocytochemistry and Western blot analysis of testicular tissue.
- Quantitative image analysis of CREM protein expression.
- Hormonal level assessment (FSH, LH, testosterone) in patients.
Main Results:
- CREM protein was normally expressed in round spermatids (stages I-III) during human spermatogenesis.
- Significantly reduced or undetectable CREM expression was observed in infertile patients with round spermatid maturation arrest.
- CREM-negative spermatids did not progress beyond stage III of development.
Conclusions:
- CREM plays a significant role in the maturation of human round spermatids.
- Altered CREM expression may be a contributing factor to spermatid maturation defects in some cases of idiopathic male infertility.