Wee Kinases, Big Impact: Wee and Myt Kinases as Critical Regulators of Meiotic Progression
Shannon Pfeiffer1, Lourds M Fernando2, Anna K Allen3
1Department of Biological Sciences, University of Delaware, Newark, DE 19716, USA.
Abstract:
Regulation of the cell cycle is critical for maintaining genomic integrity. Therefore, cells have adapted several mechanisms to ensure that cell cycle events occur in a precise order. Some mechanisms regulate cell cycle progression by inhibiting cell cycle drivers, cyclin-dependent kinases (CDKs). The Wee1/Myt1 family of kinases regulate the G2-to-M phase transition by phosphorylating and inactivating Cdk1. Investigations of Wee1/Myt1 have mainly focused on its regulation of mitosis; the role of Wee1/Myt1 kinases in the meiotic cell cycle is less well understood. However, misregulation of Wee1/Myt1 during meiosis can have a range of fertility consequences from mild to severe, including human fertilization failure and infertility. Studies from several organisms reveal that the meiotic functions of Wee1/Myt1 kinases differ from mitosis depending on the species and sex. Here, we review how Wee1/Myt1 kinases regulate cell cycle progression in meiosis across species. We highlight current knowledge of Wee1/Myt1 in meiosis and discuss unanswered questions and new directions to advance the field of meiosis and reproduction. Understanding the molecular and cellular functions of Wee1/Myt1 homologs in these various systems may contribute to the discovery of the mechanisms underlying human infertility cases, better diagnoses, and clinical treatments.
Insights
The Wee1/Myt1 kinase family regulates cell division. This review explores their crucial, yet less understood, roles in meiosis, impacting fertility and potentially revealing causes of human infertility.
Area of Science:
- Cell Biology
- Reproductive Biology
- Genetics
Background:
- Cell cycle regulation is vital for genomic stability.
- Wee1/Myt1 kinases inactivate Cdk1, controlling the G2-to-M transition.
- Their role in mitosis is well-studied, but less is known about their meiotic functions.
Purpose of the Study:
- To review the regulation of cell cycle progression by Wee1/Myt1 kinases during meiosis across different species.
- To highlight current knowledge and identify gaps in understanding Wee1/Myt1's meiotic functions.
- To explore the implications for fertility and human infertility.
Main Methods:
- Literature review of studies on Wee1/Myt1 kinases in meiosis.
- Comparative analysis of Wee1/Myt1 function across species and sexes.
- Discussion of molecular and cellular mechanisms.
Main Results:
- Wee1/Myt1 kinases play diverse roles in meiosis, varying by species and sex.
- Misregulation of these kinases during meiosis can lead to fertility issues, including human infertility.
- Their meiotic functions differ significantly from their mitotic roles.
Conclusions:
- Further understanding of Wee1/Myt1 homologs in meiosis is crucial for reproductive biology.
- Investigating these kinases may uncover mechanisms behind human infertility.
- This knowledge could lead to improved diagnostics and treatments for infertility.
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