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Published on: July 30, 2020
Meiotic resumption of porcine immature oocytes is prevented by ooplasmic Gsalpha functions
Marie Morikawa1, Mami Seki, Sachi Kume
1Laboratory of Applied Genetics, Graduate School of Agriculture and Life Science, University of Tokyo, Tokyo, Japan.
Abstract:
A high cyclic adenosine monophosphate (cAMP) level in fully-grown immature oocytes prevents meiotic resumption. In Xenopus, inhibitory cAMP is synthesized within oocytes depending on a stimulatory alpha-subunit of G-protein (Gsalpha). In the present study, we examined whether ooplasmic Gsalpha is involved in meiotic arrest of porcine oocytes. First, we studied the presence of Gsalpha molecules in porcine oocytes by immunoblotting, and this suggested the presence of reported isoforms (45 and 48 kDa) not only in cumulus cells but also in porcine oocytes. Then we injected an anti-Gsalpha antibody into porcine immature oocytes and found that inhibition of ooplasmic Gsalpha functions significantly promoted germinal vesicle breakdown of the oocytes, whose spontaneous meiotic resumption was prevented by 3-isobutyl-l-methylxanthine (IBMX) treatment. Although cyclin B synthesis and M-phase promoting factor (MPF) activation were largely prevented until 30 h of culture in IBMX-treated oocytes, injection of anti-Gsalpha antibody into these oocytes partially recovered cyclin B synthesis and activated MPF activity at 30 h. These results suggest that meiotic resumption of porcine oocytes is prevented by ooplasmic Gsalpha, which may stimulate cAMP synthesis within porcine oocytes, and that synthesized cAMP prevents meiotic resumption of oocytes through the signaling pathways involved in MPF activation.
Insights
Ooplasmic G-protein alpha subunit (Gsalpha) inhibits meiotic resumption in porcine oocytes by stimulating cyclic adenosine monophosphate (cAMP) synthesis. Inhibiting Gsalpha promotes oocyte maturation, offering insights into reproductive biology.
Area of Science:
- Reproductive Biology
- Cell Signaling
- Molecular Endocrinology
Background:
- High cyclic adenosine monophosphate (cAMP) levels maintain meiotic arrest in immature oocytes.
- In Xenopus, G-protein alpha subunit (Gsalpha) stimulates intracellular cAMP synthesis, inhibiting meiotic resumption.
Purpose of the Study:
- To investigate the role of ooplasmic Gsalpha in regulating meiotic arrest in porcine oocytes.
- To determine if Gsalpha influences cAMP synthesis and subsequent meiotic progression in pigs.
Main Methods:
- Immunoblotting to detect Gsalpha isoforms in porcine oocytes.
- Microinjection of anti-Gsalpha antibody into oocytes to inhibit Gsalpha function.
- Assessment of germinal vesicle breakdown, cyclin B synthesis, and M-phase promoting factor (MPF) activation.
Main Results:
- Gsalpha isoforms (45 and 48 kDa) were detected in porcine oocytes.
- Inhibition of ooplasmic Gsalpha significantly promoted germinal vesicle breakdown.
- Anti-Gsalpha antibody injection partially restored cyclin B synthesis and MPF activity in arrested oocytes.
Conclusions:
- Ooplasmic Gsalpha plays a crucial role in preventing meiotic resumption in porcine oocytes.
- Gsalpha likely stimulates cAMP synthesis within oocytes, which in turn inhibits MPF activation and maintains meiotic arrest.
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