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Targeted Disruption of Pten in Ovarian Granulosa Cells Enhances Ovulation and Extends the Life Span of Luteal Cells

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Journal Mol Endocrinol
Date 2008 Jul 9
PMID 18606860
Citations 91
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Abstract

FSH activates the phosphatidylinositol-3 kinase (PI3K)/acute transforming retrovirus thymoma protein kinase pathway and thereby enhances granulosa cell differentiation in culture. To identify the physiological role of the PI3K pathway in vivo we disrupted the PI3K suppressor, Pten, in developing ovarian follicles. To selectively disrupt Pten expression in granulosa cells, Ptenfl/fl mice were mated with transgenic mice expressing cAMP response element recombinase driven by Cyp19 promoter (Cyp19-Cre). The resultant Pten mutant mice were fertile, ovulated more oocytes, and produced moderately more pups than control mice. These physiological differences in the Pten mutant mice were associated with hyperactivation of the PI3K/acute transforming retrovirus thymoma protein kinase pathway, decreased susceptibility to apoptosis, and increased proliferation of mutant granulosa cells. Strikingly, corpora lutea of the Pten mutant mice persisted longer than those of control mice. Although the follicular and luteal cell steroidogenesis in Ptenfl/fl;Cyp19-Cre mice was similar to controls, viable nonsteroidogenic luteal cells escaped structural luteolysis. These findings provide the novel evidence that Pten impacts the survival/life span of granulosa/luteal cells and that its loss not only results in the facilitated ovulation but also in the persistence of nonsteroidogenic luteal structures in the adult mouse ovary.

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References
1.
Reddy P, Shen L, Ren C, Boman K, Lundin E, Ottander U . Activation of Akt (PKB) and suppression of FKHRL1 in mouse and rat oocytes by stem cell factor during follicular activation and development. Dev Biol. 2005; 281(2):160-70. DOI: 10.1016/j.ydbio.2005.02.013. View

2.
Rao M, MIDGLEY Jr A, Richards J . Hormonal regulation of ovarian cellular proliferation. Cell. 1978; 14(1):71-8. DOI: 10.1016/0092-8674(78)90302-1. View

3.
Rodriguez-Viciana P, Marte B, Warne P, Downward J . Phosphatidylinositol 3' kinase: one of the effectors of Ras. Philos Trans R Soc Lond B Biol Sci. 1996; 351(1336):225-31; discussion 231-2. DOI: 10.1098/rstb.1996.0020. View

4.
Richards J, Russell D, Ochsner S, Hsieh M, Doyle K, Falender A . Novel signaling pathways that control ovarian follicular development, ovulation, and luteinization. Recent Prog Horm Res. 2002; 57:195-220. DOI: 10.1210/rp.57.1.195. View

5.
Richards J, Sharma S, Falender A, Lo Y . Expression of FKHR, FKHRL1, and AFX genes in the rodent ovary: evidence for regulation by IGF-I, estrogen, and the gonadotropins. Mol Endocrinol. 2002; 16(3):580-99. DOI: 10.1210/mend.16.3.0806. View