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.

BMC Developmental Biology
|October 24, 2019
PubMed
Abstract

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.

Related Concept Videos

Meiosis II02:02

Meiosis II

Meiosis II entails cell division and segregation of the sister chromatids, resulting in the production of four unique haploid gametes. The steps for meiosis II are similar to mitosis, except that meiosis II occurs in haploid cells, whereas mitosis occurs in diploid cells.
The timing and cell division patterns of meiosis differ between males and females. In male meiosis, the centrosomes are part of the formation of the meiotic spindle. However, in oocytes, including that of humans, Drosophila,...
48.9K
Anaphase Promoting Complex00:50

Anaphase Promoting Complex

The stepwise destruction of specific proteins is necessary for the progression and completion of the cell cycle. Such proteins are ubiquitinated by ubiquitin ligases and then subsequently destroyed by the proteasome. The SCF (Skp1/Cullin/F-box) and the anaphase-promoting complex (APC) are two important ubiquitin ligases involved in cell cycle progression. While SCF is active throughout the cell cycle, APC gets activated during metaphase to anaphase transition. Cdc20 or Cdh1 binds to APC and...
3.3K
Oogenesis02:07

Oogenesis

In human women, oogenesis produces one mature egg cell or ovum for every precursor cell that enters meiosis. This process differs in two unique ways from the equivalent procedure of spermatogenesis in males. First, meiotic divisions during oogenesis are asymmetric, meaning that a large oocyte (containing most of the cytoplasm) and minor polar body are produced as a result of meiosis I, and again following meiosis II. Since only oocytes will go on to form embryos if fertilized, this unequal...
68.7K
Meiosis vs. Mitosis02:57

Meiosis vs. Mitosis

Cell division is necessary for growth and reproduction in organisms. Mitosis aids cell growth and development by dividing somatic cells. In contrast, meiosis causes the division of germ cells and plays an essential role in sexual reproduction. Due to their unique functional requirements, mitosis and meiosis differ from each other in multiple aspects.
Before the start of mitosis and meiosis I, the cell synthesizes DNA, resulting in two homologous copies of each chromosome. DNA synthesis is...
69.1K
Separation of Sister Chromatids02:17

Separation of Sister Chromatids

At the transition from prophase to metaphase, there is a reduction in cohesion along the chromosomal arms, resulting in the resolution of sister chromatids. However, residual cohesin connections remain to hold the sister chromatids together until the transition from metaphase to anaphase. The residual connection prevents any premature separation of sister chromatids, blocking the risks of aneuploidy within the daughter cells.
At the onset of anaphase, separase, a proteolytic enzyme, is...
4.3K