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Whole Mount Immunofluorescence and Follicle Quantification of Cultured Mouse Ovaries
Published on: May 2, 2018
Ovarian function and morphology after deletion of the DARPP-32 gene in mice
A Mayerhofer1, S Fritz, S Mani
1Anatomisches Institut der Universität München, Munich, Germany. Mayerhofer@lrz.uni-muenchen.de
Abstract:
A plethora of systemic and local signaling molecules regulate ovarian function, but how different signaling molecules interact within an ovarian target cell is not known. Here we report that endocrine cells of the ovary express a phosphoprotein, DARPP-32 (dopamine and cyclic AMP-regulated phosphoprotein of Mr 32,000), which integrates signaling molecules in neurons. We thus hypothesized that DARPP-32 might act in a similar way in ovarian endocrine cells and therefore studied whether DARPP-32 gene deletion has consequences for ovarian functions in mice. Reproductive performance of adult mutants did not differ from wild-type females, as judged from numbers of litters and pups delivered. Similar steroid levels in mutant and wild-type mice ruled out gross abnormalities in the hypothalamic-pituitary-ovarian axis. However, an analysis of ovarian morphology, using serially sectioned ovaries, revealed several differences. Ovaries of young adult mutant mice at 2 - 3 months contained luteinized follicles, but fewer corpora lutea. At 5 - 6 months, large cysts were found in mutant mice, as well as reduced numbers of preantral follicles and antral follicles. Interstitial cell hypertrophy and degeneration was marked in all mutant ovaries at this age. Thus, while the lack of DARPP-32 does not overtly alter reproductive performance in adult mice, it is associated with progressive alterations and derangements of growth and development of ovarian follicles, suggesting premature ovarian ageing. This implies that ovarian DARPP-32 is involved in follicular development, presumably by integrating effects of signaling molecules, which act together to ensure efficient follicular development.
Insights
Dopamine and cyclic AMP-regulated phosphoprotein of Mr 32,000 (DARPP-32) integrates signaling in ovarian cells. Its absence in mice causes ovarian aging, impacting follicular development despite normal reproductive performance.
Area of Science:
- Reproductive biology
- Molecular endocrinology
- Cellular signaling
Background:
- Ovarian function is regulated by complex signaling networks.
- The role of specific signaling integrators like DARPP-32 in ovarian cells is largely unknown.
- DARPP-32 is known to integrate signaling pathways in neurons.
Purpose of the Study:
- To investigate the role of DARPP-32 in ovarian function and follicular development.
- To determine if DARPP-32 gene deletion impacts ovarian morphology and reproductive performance in mice.
- To explore the potential of DARPP-32 as a modulator of ovarian cell signaling.
Main Methods:
- Generation and analysis of DARPP-32 knockout mice.
- Assessment of reproductive performance (litter and pup counts).
- Measurement of serum steroid levels.
- Detailed histological analysis of ovarian morphology at different ages.
Main Results:
- No significant difference in reproductive performance or steroid levels between mutant and wild-type mice.
- Progressive ovarian morphological changes in mutant mice, including luteinized follicles, fewer corpora lutea, ovarian cysts, and reduced follicle counts.
- Evidence of interstitial cell hypertrophy and degeneration in mutant ovaries, suggesting premature ovarian aging.
Conclusions:
- Ovarian DARPP-32 plays a crucial role in regulating ovarian follicular development and preventing premature aging.
- While not affecting overall reproductive output in adult mice, DARPP-32 deficiency leads to progressive ovarian derangements.
- DARPP-32 likely integrates signaling pathways essential for maintaining ovarian health and efficient follicular development.

