Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Cyclin B3 is dispensable for mouse spermatogenesis

View through CrossRef
Abstract Cyclins, as regulatory partners of cyclin-dependent kinases (CDKs), control the switch-like cell cycle transitions that orchestrate orderly duplication and segregation of genomes. Compared to mitosis, relatively little is known about how cyclin-CDK complexes control meiosis, the specialized cell division that generates gametes for sexual production. Mouse cyclin B3 was previously shown to have expression restricted to the beginning of meiosis, making it a candidate to regulate meiotic events. Indeed, female mice lacking cyclin B3 are sterile because oocytes arrest at the metaphase-to-anaphase transition of meiosis I. However, whether cyclin B3 functions during spermatogenesis was untested. Here, we found that males lacking cyclin B3 are fertile and show no detectable defects in spermatogenesis based on histological analysis of seminiferous tubules. Cytological analysis further showed no detectable defects in homologous chromosome synapsis or meiotic progression, and suggested that recombination is initiated and completed efficiently. Moreover, absence of cyclin B3 did not exacerbate previously described meiotic defects in mutants deficient for cyclin E2, suggesting a lack of redundancy between these cyclins. Thus, unlike in females, cyclin B3 is not essential for meiosis in males despite its prominent meiosis-specific expression.
Title: Cyclin B3 is dispensable for mouse spermatogenesis
Description:
Abstract Cyclins, as regulatory partners of cyclin-dependent kinases (CDKs), control the switch-like cell cycle transitions that orchestrate orderly duplication and segregation of genomes.
Compared to mitosis, relatively little is known about how cyclin-CDK complexes control meiosis, the specialized cell division that generates gametes for sexual production.
Mouse cyclin B3 was previously shown to have expression restricted to the beginning of meiosis, making it a candidate to regulate meiotic events.
Indeed, female mice lacking cyclin B3 are sterile because oocytes arrest at the metaphase-to-anaphase transition of meiosis I.
However, whether cyclin B3 functions during spermatogenesis was untested.
Here, we found that males lacking cyclin B3 are fertile and show no detectable defects in spermatogenesis based on histological analysis of seminiferous tubules.
Cytological analysis further showed no detectable defects in homologous chromosome synapsis or meiotic progression, and suggested that recombination is initiated and completed efficiently.
Moreover, absence of cyclin B3 did not exacerbate previously described meiotic defects in mutants deficient for cyclin E2, suggesting a lack of redundancy between these cyclins.
Thus, unlike in females, cyclin B3 is not essential for meiosis in males despite its prominent meiosis-specific expression.

Related Results

Abstract 2958: Cyclin D1 regulates the ARF and INK4a promoters
Abstract 2958: Cyclin D1 regulates the ARF and INK4a promoters
Abstract Cyclin D1 is a member of cyclin protein family, which drives the cell cycle transition from G1 to S phase. The cyclin D1 protein is overexpressed in ∼50% of...
Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
Immediately before the transition from metaphase to anaphase, the protein kinase activity of maturation or M-phase promoting factor (MPF) is inactivated by a mechanism that involve...
Two-Step Mechanism of Cyclin B Degradation Initiated by Proteolytic Cleavage with the 26 S Proteasome in Fish
Two-Step Mechanism of Cyclin B Degradation Initiated by Proteolytic Cleavage with the 26 S Proteasome in Fish
AbstractTo complete meiosis II, cyclin B is degraded in a short period by the inactivation of M-phase promoting factor (MPF). Previously, we showed that the destruction of cyclin B...
CDK4/6 Dependence of Cyclin D1–Driven Parathyroid Neoplasia in Transgenic Mice
CDK4/6 Dependence of Cyclin D1–Driven Parathyroid Neoplasia in Transgenic Mice
Abstract The protein product of the cyclin D1 oncogene functions by activating partner cyclin-dependent kinases (cdk)4 or cdk6 to phosphorylate, thereby inactivating...
Data from Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
Data from Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
<div>Abstract<p>Although the molecular changes that characterize gliomas have been studied, the pathogenesis of tumor development remains unclear. p21 contributes to gl...
Data from Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
Data from Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
<div>Abstract<p>Although the molecular changes that characterize gliomas have been studied, the pathogenesis of tumor development remains unclear. p21 contributes to gl...
Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
Cyclin D1 and Cdk4 Mediate Development of Neurologically Destructive Oligodendroglioma
Abstract Although the molecular changes that characterize gliomas have been studied, the pathogenesis of tumor development remains unclear. p21 contributes to gli...
Spermatogenesis-preventing substance in Japanese eel
Spermatogenesis-preventing substance in Japanese eel
Under fresh-water cultivation conditions, spermatogenesis in the Japanese eel is arrested at an immature stage before initiation of spermatogonial proliferation. A single injection...

Back to Top