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Updated: Apr 18, 2026

Defining the Program of Maternal mRNA Translation during In vitro Maturation using a Single Oocyte Reporter Assay
Published on: June 16, 2021
Rictor/mTORC2 pathway in oocytes regulates folliculogenesis, and its inactivation causes premature ovarian failure
Zhenguo Chen1, Xiangjin Kang2, Liping Wang3
1From the State Key Laboratory of Organ Failure Research, Department of Cell Biology, School of Basic Medical Sciences, Southern Medical University, Guangzhou 510515.
Abstract:
Molecular basis of ovarian folliculogenesis and etiopathogenesis of premature ovarian failure (POF), a common cause of infertility in women, are not fully understood. Mechanistic target of rapamycin complex 2 (mTORC2) is emerging as a central regulator of cell metabolism, proliferation, and survival. However, its role in folliculogenesis and POF has not been reported. Here, we showed that the signaling activity of mTORC2 is inhibited in a 4-vinylcyclohexene diepoxide (VCD)-induced POF mouse model. Notably, mice with oocyte-specific ablation of Rictor, a key component of mTORC2, demonstrated POF phenotypes, including massive follicular death, excessive loss of functional ovarian follicles, abnormal gonadal hormone secretion, and consequently, secondary subfertility in conditional knock-out (cKO) mice. Furthermore, reduced levels of Ser-473-phosphorylated Akt and Ser-253-phosphorylated Foxo3a and elevated pro-apoptotic proteins, Bad, Bax, and cleaved poly ADP-ribose polymerase (PARP), were observed in cKO mice, replicating the signaling alterations in 4-VCD-treated ovaries. These results indicate a critical role of the Rictor/mTORC2/Akt/Foxo3a pro-survival signaling axis in folliculogenesis. Interestingly, loss of maternal Rictor did not cause obvious developmental defects in embryos or placentas from cKO mice, suggesting that maternal Rictor is dispensable for preimplantation embryonic development. Our results collectively indicate key roles of Rictor/mTORC2 in folliculogenesis, follicle survival, and female fertility and support the utility of oocyte-specific Rictor knock-out mice as a novel model for POF.
Insights
Mechanistic target of rapamycin complex 2 (mTORC2) is crucial for ovarian follicle survival and female fertility. Oocyte-specific loss of Rictor, an mTORC2 component, causes premature ovarian failure (POF) in mice.
Area of Science:
- Reproductive Biology
- Cellular Signaling
- Endocrinology
Background:
- Ovarian folliculogenesis and premature ovarian failure (POF) pathogenesis are incompletely understood.
- Mechanistic target of rapamycin complex 2 (mTORC2) regulates cell metabolism, proliferation, and survival.
- The role of mTORC2 in folliculogenesis and POF has not been previously investigated.
Purpose of the Study:
- To investigate the role of mTORC2 signaling in ovarian folliculogenesis.
- To elucidate the involvement of mTORC2 in the development of premature ovarian failure (POF).
- To establish a novel mouse model for studying POF.
Main Methods:
- Utilized a 4-vinylcyclohexene diepoxide (VCD)-induced POF mouse model.
- Generated oocyte-specific Rictor conditional knock-out (cKO) mice.
- Analyzed follicular survival, hormone secretion, and molecular signaling pathways (Akt, Foxo3a, apoptotic proteins).
Main Results:
- mTORC2 signaling was inhibited in VCD-induced POF ovaries.
- Oocyte-specific Rictor ablation led to POF phenotypes: follicular death, reduced follicle count, abnormal hormone secretion, and subfertility.
- Rictor-deficient ovaries showed reduced Akt and Foxo3a phosphorylation and increased pro-apoptotic proteins, mirroring VCD-treated ovaries.
Conclusions:
- The Rictor/mTORC2/Akt/Foxo3a axis is critical for folliculogenesis and follicle survival.
- Oocyte-specific Rictor deficiency recapitulates POF, establishing a valuable POF mouse model.
- Maternal Rictor is not essential for preimplantation embryonic development.
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