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Proteolytically Degraded Alginate Hydrogels and Hydrophobic Microbioreactors for Porcine Oocyte Encapsulation
Published on: July 30, 2020
Signaling pathways regulating FSH- and amphiregulin-induced meiotic resumption and cumulus cell expansion in the pig
R Prochazka1, M Blaha, L Nemcova
1Laboratory of Developmental Biology, , Institute of Animal Physiology and Genetics, Academy of Sciences of the Czech Republic, Rumburska 89, 277 21 Libechov, Czech Republic. prochazka@iapg.cas.cz
Abstract:
To define signaling pathways that drive FSH- and epidermal growth factor (EGF)-like peptide-induced cumulus expansion and oocyte meiotic resumption, in vitro cultured pig cumulus-oocyte complexes were treated with specific protein kinase inhibitors. We found that FSH-induced maturation of oocytes was blocked in germinal vesicle (GV) stage by protein kinase A (PKA), MAPK14, MAPK3/1, and EGF receptor (EGFR) tyrosine kinase inhibitors (H89, SB203580, U0126, and AG1478 respectively) whereas phosphoinositide-3-kinase/v-akt murine thymoma viral oncogene homolog (PI3K/AKT) inhibitor (LY294002) blocked maturation of oocytes in metaphase I (MI). Amphiregulin (AREG)-induced maturation of oocytes was efficiently blocked in GV by U0126, AG1478, and low concentrations of LY294002; H89, SB203580, and high concentrations of LY294002 allowed the oocytes to undergo breakdown of GV and blocked maturation in MI. Both FSH- and AREG-induced cumulus expansion was incompletely inhibited by H89 and completely inhibited by SB203580, U0126, AG1478, and LY294002. The inhibitors partially or completely inhibited expression of expansion-related genes (HAS2, PTGS2, and TNFAIP6) with two exceptions: H89 inhibited only TNFAIP6 expression and LY294002 increased expression of PTGS2. The results of this study are consistent with the idea that PKA and MAPK14 pathways are essential for FSH-induced transactivation of the EGFR, and synthesis of EGF-like peptides in cumulus cells and MAPK3/1 is involved in regulation of transcriptional and posttranscriptional events in cumulus cells required for meiotic resumption and cumulus expansion. PI3K/AKT signaling is important for regulation of cumulus expansion, AREG-induced meiotic resumption, and oocyte MI/MII transition. The present data also indicate the existence of an FSH-activated and PKA-independent pathway involved in regulation of HAS2 and PTGS2 expression in cumulus cells.
Insights
This study reveals key signaling pathways controlling pig oocyte maturation and cumulus expansion. Follicle-stimulating hormone (FSH) and EGF-like peptides utilize distinct pathways involving protein kinase A (PKA), MAPK, and PI3K/AKT signaling.
Area of Science:
- Reproductive Biology
- Cell Signaling
- Molecular Endocrinology
Background:
- Cumulus expansion and oocyte meiotic resumption are crucial for mammalian reproduction.
- Follicle-stimulating hormone (FSH) and epidermal growth factor (EGF)-like peptides are key regulators of these processes.
- Understanding the underlying signaling pathways is essential for reproductive research.
Purpose of the Study:
- To elucidate the specific signaling pathways involved in FSH- and EGF-like peptide-induced cumulus expansion and oocyte meiotic resumption in pigs.
- To identify the roles of various protein kinases, including PKA, MAPK, and PI3K/AKT, in these developmental events.
Main Methods:
- In vitro culture of pig cumulus-oocyte complexes.
- Treatment with specific protein kinase inhibitors targeting PKA, MAPK14, MAPK3/1, EGFR, and PI3K/AKT.
- Assessment of oocyte meiotic progression (GV, MI, MII stages).
- Quantification of cumulus expansion and expression of key genes (HAS2, PTGS2, TNFAIP6).
Main Results:
- FSH-induced oocyte maturation was blocked by inhibitors of PKA, MAPK14, MAPK3/1, and EGFR, while PI3K/AKT inhibition blocked maturation at metaphase I (MI).
- Amphiregulin (AREG)-induced maturation was blocked by MAPK3/1, EGFR, and low-dose PI3K/AKT inhibitors.
- Both FSH- and AREG-induced cumulus expansion were significantly inhibited by SB203580, U0126, AG1478, and LY294002, with varying effects on gene expression.
Conclusions:
- PKA and MAPK14 pathways are critical for FSH-induced EGFR transactivation and EGF-like peptide synthesis in cumulus cells.
- MAPK3/1 regulates transcriptional and post-transcriptional events for meiotic resumption and cumulus expansion.
- PI3K/AKT signaling is vital for cumulus expansion, AREG-induced meiotic resumption, and oocyte transition from MI to MII.
- An FSH-activated, PKA-independent pathway regulates HAS2 and PTGS2 expression in cumulus cells.
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