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Updated: Jan 22, 2026

Functional Manipulation of Maternal Gene Products Using In Vitro Oocyte Maturation in Zebrafish
Published on: April 22, 2017
SIRT2 functions in aging, autophagy, and apoptosis in post-maturation bovine oocytes
Dejun Xu1, Xiaohan Jiang1, Huanshan He1
1College of Animal Science and Technology, Northwest A&F University, Yangling 712100, China.
Aims:
Sirtuins have been implicated in the aging process, however, the functions of SIRT2 in post-maturation aging of oocytes are not fully understood. The purpose of the present investigation was to assess the roles of SIRT2 in aged oocytes and mechanisms involved.
Main Methods:
The fresh MII oocytes were aging in vitro, and treated with SIRT2 inhibitor (SirReal2), autophagy activator (Rapamycin), and autophagy inhibitor (3-Ma) for 24 h, respectively. Oocyte activation, cytoplasmic fragmentation, and spindle defects, mitochondrial distribution, ROS levels, ATP production, mitochondrial membrane potential, and early apoptosis were investigated. Western blotting was performed to determine LC3-II accumulation, SQSTM1 degradation, and caspase-3 activity.
Key Findings:
SIRT2 expression gradually decreased in a time-dependent manner during oocyte aging. Treatment with SirReal2 significantly increased the rates of oocyte activation, cytoplasmic fragmentation, and spindle defects. In particular, the high ROS levels, abnormal mitochondrial distribution, low ATP production, and lost ΔΨm were observed in SirReal2-exposed oocytes. Further analysis revealed that LC3-II accumulation and SQSTM1 degradation were induced by SIRT2 inhibition. By performing early apoptosis analysis showed that oocyte aging was accompanied with cellular apoptosis, and SIRT2 inhibition increased apoptosis rates of aged oocytes. Importantly, upregulating autophagy with Rapamycin could mimic the effects of SIRT2 inhibition on apoptosis by increasing caspase-3 activation, whereas downregulating autophagy with 3-MA could abolish those effects by blocking caspase-3 activation.
Significance:
Our results suggest that SIRT2 inactivation is a key mechanism underlying of cellular aging, and SIRT2 inhibition contributes to autophagy-dependent cellular apoptosis in post-maturation oocytes.
Insights
SIRT2 inactivation drives cellular aging in oocytes by promoting autophagy-dependent apoptosis. Inhibiting SIRT2 worsens oocyte quality and function, highlighting its crucial role in reproductive aging.
Area of Science:
- Cellular Biology
- Reproductive Science
- Aging Research
Background:
- Sirtuins, including SIRT2, are involved in aging processes.
- The specific role of SIRT2 in aged oocytes remains unclear.
- Understanding SIRT2 function is crucial for addressing age-related oocyte quality decline.
Purpose of the Study:
- To investigate the role of SIRT2 in aged oocytes.
- To elucidate the mechanisms underlying SIRT2 function in oocyte aging.
- To assess the impact of SIRT2 inhibition on oocyte quality and apoptosis.
Main Methods:
- In vitro aging of fresh MII oocytes.
- Treatment with SIRT2 inhibitor (SirReal2), autophagy activator (Rapamycin), and autophagy inhibitor (3-Ma).
- Assessment of oocyte activation, fragmentation, spindle defects, mitochondrial function, ROS, ATP, membrane potential, and apoptosis via Western blotting and other assays.
Main Results:
- SIRT2 expression decreased over time during oocyte aging.
- SIRT2 inhibition (SirReal2) increased oocyte activation failure, fragmentation, and spindle defects.
- SIRT2 inhibition led to elevated ROS, impaired mitochondrial function, and reduced ATP production.
- SIRT2 inhibition promoted LC3-II accumulation and SQSTM1 degradation, indicating autophagy activation.
- SIRT2 inhibition increased apoptosis rates in aged oocytes, a process dependent on autophagy.
Conclusions:
- SIRT2 inactivation is a key factor in cellular aging of oocytes.
- SIRT2 inhibition contributes to autophagy-dependent apoptosis in post-maturation oocytes.
- Targeting SIRT2 may offer therapeutic strategies for improving oocyte quality in aging individuals.
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