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Updated: Jan 5, 2026

Evaluation of the Spindle Assembly Checkpoint Integrity in Mouse Oocytes
Published on: September 13, 2022
YWHA (14-3-3) protein isoforms and their interactions with CDC25B phosphatase in mouse oogenesis and oocyte
Alaa A Eisa1, Santanu De2, Ariana Detwiler3
1School of Biomedical Sciences, Kent State University, Kent, OH, 22422, USA.
Background:
Immature mammalian oocytes are held arrested at prophase I of meiosis by an inhibitory phosphorylation of cyclin-dependent kinase 1 (CDK1). Release from this meiotic arrest and germinal vesicle breakdown is dependent on dephosphorylation of CDK1 by the protein, cell cycle division 25B (CDC25B). Evidence suggests that phosphorylated CDC25B is bound to YWHA (14-3-3) proteins in the cytoplasm of immature oocytes and is thus maintained in an inactive form. The importance of YWHA in meiosis demands additional studies.
Results:
Messenger RNA for multiple isoforms of the YWHA protein family was detected in mouse oocytes and eggs. All seven mammalian YWHA isoforms previously reported to be expressed in mouse oocytes, were found to interact with CDC25B as evidenced by in situ proximity ligation assays. Interaction of YWHAH with CDC25B was indicated by Förster Resonance Energy Transfer (FRET) microscopy. Intracytoplasmic microinjection of oocytes with R18, a known, synthetic, non-isoform-specific, YWHA-blocking peptide promoted germinal vesicle breakdown. This suggests that inhibiting the interactions between YWHA proteins and their binding partners releases the oocyte from meiotic arrest. Microinjection of isoform-specific, translation-blocking morpholino oligonucleotides to knockdown or downregulate YWHA protein synthesis in oocytes suggested a role for a specific YWHA isoform in maintaining the meiotic arrest. More definitively however, and in contrast to the knockdown experiments, oocyte-specific and global deletion of two isoforms of YWHA, YWHAH (14-3-3 eta) or YWHAE (14-3-3 epsilon) indicated that the complete absence of either or both isoforms does not alter oocyte development and release from the meiotic prophase I arrest.
Conclusions:
Multiple isoforms of the YWHA protein are expressed in mouse oocytes and eggs and interact with the cell cycle protein CDC25B, but YWHAH and YWHAE isoforms are not essential for normal mouse oocyte maturation, fertilization and early embryonic development.
Insights
YWHA proteins bind to CDC25B, preventing meiotic arrest in oocytes. However, specific YWHA isoforms (YWHAH and YWHAE) are not essential for oocyte maturation, as their absence does not prevent development.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Oocyte maturation is arrested at prophase I by CDK1 phosphorylation.
- CDC25B dephosphorylates CDK1, releasing the meiotic arrest.
- YWHA (14-3-3) proteins bind phosphorylated CDC25B, inhibiting its activity in immature oocytes.
Purpose of the Study:
- To investigate the role of YWHA proteins in regulating meiotic arrest in mammalian oocytes.
- To determine if specific YWHA isoforms are essential for oocyte maturation.
Main Methods:
- Detection of YWHA mRNA in mouse oocytes and eggs.
- In situ proximity ligation assays and FRET microscopy to study YWHA-CDC25B interactions.
- Microinjection of YWHA-blocking peptides and morpholino oligonucleotides.
- Oocyte-specific and global deletion of YWHAH and YWHAE isoforms.
Main Results:
- Multiple YWHA isoforms interact with CDC25B in mouse oocytes.
- Inhibiting YWHA interactions with a peptide promotes meiotic resumption.
- Knockdown of specific YWHA isoforms suggested a role in maintaining arrest.
- Deletion of YWHAH or YWHAE isoforms did not affect oocyte development or meiotic release.
Conclusions:
- YWHA proteins bind CDC25B in oocytes, but YWHAH and YWHAE are not essential for meiotic arrest release.
- Normal oocyte maturation, fertilization, and early embryonic development proceed without YWHAH or YWHAE.
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