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Published on: July 29, 2016
Hypogonadism Associated with Cyp19a1 (Aromatase) Posttranscriptional Upregulation in Celf1 Knockout Mice
Gaella Boulanger1, Marie Cibois1, Justine Viet1
1Université de Rennes 1, Université Européenne de Bretagne, Institut Fédératif de Recherche 140, Rennes, France Centre National de la Recherche Scientifique UMR 6290, Institut de Génétique et Développement de Rennes, Rennes, France.
Abstract:
CELF1 is a multifunctional RNA-binding protein that controls several aspects of RNA fate. The targeted disruption of the Celf1 gene in mice causes male infertility due to impaired spermiogenesis, the postmeiotic differentiation of male gametes. Here, we investigated the molecular reasons that underlie this testicular phenotype. By measuring sex hormone levels, we detected low concentrations of testosterone in Celf1-null mice. We investigated the effect of Celf1 disruption on the expression levels of steroidogenic enzyme genes, and we observed that Cyp19a1 was upregulated. Cyp19a1 encodes aromatase, which transforms testosterone into estradiol. Administration of testosterone or the aromatase inhibitor letrozole partly rescued the spermiogenesis defects, indicating that a lack of testosterone associated with excessive aromatase contributes to the testicular phenotype. In vivo and in vitro interaction assays demonstrated that CELF1 binds to Cyp19a1 mRNA, and reporter assays supported the conclusion that CELF1 directly represses Cyp19a1 translation. We conclude that CELF1 downregulates Cyp19a1 (Aromatase) posttranscriptionally to achieve high concentrations of testosterone compatible with spermiogenesis completion. We discuss the implications of these findings with respect to reproductive defects in men, including patients suffering from isolated hypogonadotropic hypogonadism and myotonic dystrophy type I.
Insights
The RNA-binding protein CELF1 normally represses aromatase (Cyp19a1) to maintain testosterone levels essential for male fertility. Its absence causes infertility by increasing aromatase and lowering testosterone.
Area of Science:
- Molecular Biology
- Reproductive Biology
- Genetics
Background:
- CELF1 is an RNA-binding protein regulating RNA fate.
- Celf1 gene disruption in mice leads to male infertility and impaired spermiogenesis.
- The molecular basis for this testicular phenotype requires investigation.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying CELF1-deficiency-induced male infertility.
- To investigate the role of CELF1 in regulating sex hormone levels and steroidogenic gene expression.
- To determine if CELF1 directly impacts Cyp19a1 (aromatase) expression and function.
Main Methods:
- Measurement of sex hormone levels (testosterone).
- Analysis of steroidogenic enzyme gene expression (Cyp19a1).
- In vivo and in vitro RNA-protein interaction and reporter assays.
Main Results:
- Celf1-null mice exhibited low testosterone levels and impaired spermiogenesis.
- Upregulation of Cyp19a1 (aromatase) was observed in Celf1-null mice.
- CELF1 directly binds to Cyp19a1 mRNA and represses its translation, thus regulating testosterone levels.
Conclusions:
- CELF1 post-transcriptionally downregulates Cyp19a1 (aromatase) to maintain testosterone levels crucial for spermiogenesis.
- Dysregulation of CELF1-mediated aromatase control contributes to male infertility.
- Findings have implications for understanding reproductive defects in conditions like hypogonadotropic hypogonadism and myotonic dystrophy type I.
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