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Published on: June 2, 2018
Characterization of the abnormal pancreatic development, reduced growth and infertility in Cdk4 mutant mice
Richard V Mettus1, Sushil G Rane
1Institute for Cancer Research and Molecular Biology, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Abstract:
Cyclin-dependent kinase 4 (Cdk4) and Cdk6, and later Cdk2, in association with their specific cyclin partners, regulate the G1 to S phase cell cycle transition of mammalian cells by phosphorylation of retinoblastoma (Rb) family proteins. Phosphorylation of Rb results in the release of S-phase specific transcription factors; cell cycle-promoting gene expression, and advancement of the cell cycle. Loss of Cdk4 by homologous-targeted disruption leads to a delay in S-phase entry in serum-stimulated mouse embryo fibroblast (MEF) cultures. Homozygous Cdk4-deficient mice display defects in weight gain, fertility and hypoproliferation of specific endocrine cells of the pituitary and pancreas, the latter of which results in a diabetes-like phenotype. In contrast, inheritance of the p16(Ink4a)-insensitive Cdk4(R24C) mutation leads to spontaneous transformation of MEF cultures in vitro and, in vivo, hyperproliferative disorders that progress to cancer. In this manuscript, we report characterization of the abnormal pancreatic development, reduced growth and infertility in Cdk4 mutant mice. We observe that, whereas Cdk4 is dispensable for early pancreatic development, normal Cdk4 expression is critical for optimal growth of the organism. Also, we observe that loss of Cdk4 may result in insulin insensitivity, implicating an additional role of Cdk4 in beta-cell function, in addition to its role in beta-cell proliferation. Further, we demonstrate that loss of Cdk4 leads to an age-dependent defect in spermatogenesis and disruption in the timing of the estrus cycle. Taken together, our results indicate that the overall defects in growth, fertility and pancreatic development in Cdk4-deficient mice may be a combination of cell-type specific defects and altered glucose metabolism, as a result of defects in postnatal pancreatic development.
Insights
Cyclin-dependent kinase 4 (Cdk4) deficiency causes growth, fertility, and pancreatic development issues in mice. Loss of Cdk4 impacts cell cycle regulation, leading to diabetes-like phenotypes and reproductive defects.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- Cyclin-dependent kinase 4 (Cdk4) and its partners regulate the cell cycle transition from G1 to S phase via retinoblastoma (Rb) protein phosphorylation.
- Loss of Cdk4 function can lead to cell cycle delays, while mutations can cause uncontrolled cell proliferation and cancer.
Purpose of the Study:
- To characterize the developmental, growth, and fertility defects in Cdk4 mutant mice.
- To investigate the role of Cdk4 in pancreatic development and function, as well as in reproductive processes.
Main Methods:
- Homologous-targeted disruption of Cdk4 in mice.
- Analysis of pancreatic development, organismal growth, fertility, and cell cycle progression in Cdk4-deficient mice.
- Assessment of beta-cell function and glucose metabolism.
Main Results:
- Cdk4 deficiency resulted in impaired weight gain, infertility, and abnormal pancreatic development with a diabetes-like phenotype.
- While Cdk4 is not essential for early pancreatic development, it is critical for optimal organismal growth.
- Loss of Cdk4 led to insulin insensitivity, age-dependent defects in spermatogenesis, and disrupted estrus cycles.
Conclusions:
- Cdk4 plays a critical role in postnatal growth, fertility, and pancreatic development.
- Defects in Cdk4 function contribute to altered glucose metabolism and reproductive issues.
- These findings highlight the multifaceted role of Cdk4 in mammalian development and physiology.

