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Published on: December 28, 2021
Disrupting Cyclin Dependent Kinase 1 in Spermatocytes Causes Late Meiotic Arrest and Infertility in Mice
Tracy M Clement1, Amy L Inselman1, Eugenia H Goulding1
1Gamete Biology Group, Reproductive and Developmental Biology Laboratory, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, North Carolina.
Abstract:
While cyclin dependent kinase 1 (CDK1) has a critical role in controlling resumption of meiosis in oocytes, its role has not been investigated directly in spermatocytes. Unique aspects of male meiosis led us to hypothesize that its role is different in male meiosis than in female meiosis. We generated a conditional knockout (cKO) of the Cdk1 gene in mouse spermatocytes to test this hypothesis. We found that CDK1-null spermatocytes undergo synapsis, chiasmata formation, and desynapsis as is seen in oocytes. Additionally, CDK1-null spermatocytes relocalize SYCP3 to centromeric foci, express H3pSer10, and initiate chromosome condensation. However, CDK1-null spermatocytes fail to form condensed bivalent chromosomes in prophase of meiosis I and instead are arrested at prometaphase. Thus, CDK1 has an essential role in male meiosis that is consistent with what is known about the role of CDK1 in female meiosis, where it is required for formation of condensed bivalent metaphase chromosomes and progression to the first meiotic division. We found that cKO spermatocytes formed fully condensed bivalent chromosomes in the presence of okadaic acid, suggesting that cKO chromosomes are competent to condense, although they do not do so in vivo. Additionally, arrested cKO spermatocytes exhibited irregular cell shape, irregular large nuclei, and large distinctive nucleoli. These cells persist in the seminiferous epithelium through the next seminiferous epithelial cycle with a lack of stage XII checkpoint-associated cell death. This indicates that CDK1 is required upstream of a checkpoint-associated cell death as well as meiotic metaphase progression in mouse spermatocytes.
Insights
Cyclin-dependent kinase 1 (CDK1) is essential for male meiosis progression in mice. CDK1-null spermatocytes arrest in meiosis I, indicating its critical role in bivalent chromosome condensation and cell cycle control.
Area of Science:
- Reproductive Biology
- Cell Biology
- Genetics
Background:
- Cyclin-dependent kinase 1 (CDK1) regulates female meiosis resumption.
- The role of CDK1 in male meiosis remains largely uninvestigated.
- Male meiosis possesses unique characteristics compared to female meiosis.
Purpose of the Study:
- To investigate the direct role of CDK1 in mouse spermatocytes.
- To test the hypothesis that CDK1 function differs between male and female meiosis.
- To elucidate CDK1's necessity in male meiotic progression.
Main Methods:
- Generated a conditional knockout (cKO) of the Cdk1 gene specifically in mouse spermatocytes.
- Analyzed meiotic progression, chromosome synapsis, chiasmata formation, and condensation in CDK1-null spermatocytes.
- Utilized okadaic acid treatment to assess chromosome condensation potential in vitro.
Main Results:
- CDK1-null spermatocytes initiated synapsis, chiasmata formation, and SYCP3 relocalization but failed to form condensed bivalent chromosomes.
- These spermatocytes arrested at prometaphase I, demonstrating a critical role for CDK1 in metaphase chromosome condensation.
- Arrested cells exhibited abnormal morphology and persisted without undergoing checkpoint-associated cell death, indicating CDK1's role upstream of this process.
Conclusions:
- CDK1 is essential for the formation of condensed bivalent chromosomes and progression through meiosis I in male mice.
- The function of CDK1 in male meiosis is consistent with its known role in female meiosis.
- CDK1 acts upstream of meiotic metaphase progression and checkpoint-associated cell death in spermatocytes.
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