Genetic evidence for functional dependency of p18Ink4c on Cdk4
Xin-Hai Pei1, Feng Bai, Tateki Tsutsui
1Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7295, USA.
Abstract:
The INK4 family of cyclin-dependent kinase (CDK) inhibitors negatively regulates cyclin D-dependent CDK4 and CDK6 and induces the growth-suppressive function of Rb family proteins. Mutations in the Cdk4 gene conferring INK4 resistance are associated with familial and sporadic melanoma in humans and result in a wide spectrum of tumors in mice, suggesting that INK4 is a major regulator of CDK4. Mice lacking the Cdk4 gene exhibit various defects in many organs associated with hypocellularity, whereas loss of the p18(Ink4c) gene results in widespread hyperplasia and organomegaly. To genetically test the notion that the function of INK4 is dependent on CDK4, we generated p18; Cdk4 double-mutant mice and examined the organs and tissues which developed abnormalities when either gene is deleted. We show here that, in all organs we have examined, including pituitary, testis, pancreas, kidney, and adrenal gland, hyperproliferative phenotypes associated with p18 loss were canceled. The double-mutant mice exhibited phenotypes very close to or indistinguishable from that of Cdk4 single-mutant mice. Mice lacking p27(Kip1) develop widespread hyperplasia and organomegaly similar to those developed by p18-deficient mice. The p27; Cdk4 double-mutant mice, however, displayed phenotypes intermediate between those of p27 and Cdk4 single-mutant mice. These results provide genetic evidence that in mice p18(Ink4c) and p27(Kip1) mediate the transduction of different cell growth and proliferation signals to CDK4 and that p18(Ink4c) is functionally dependent on CDK4.
Insights
The INK4 protein family, including p18(Ink4c), regulates cell growth by inhibiting cyclin-dependent kinase 4 (CDK4). Genetic studies show p18(Ink4c) function is dependent on CDK4, as removing CDK4 cancels p18(Ink4c) loss-induced hyperplasia.
Area of Science:
- Cell Biology
- Genetics
- Cancer Research
Background:
- The INK4 family of cyclin-dependent kinase (CDK) inhibitors, including p18(Ink4c), are crucial negative regulators of cell cycle progression.
- CDK4 mutations conferring INK4 resistance are linked to melanoma, highlighting the INK4-CDK4 pathway's importance in cancer.
Purpose of the Study:
- To genetically investigate the functional dependency of INK4 inhibitors on CDK4.
- To elucidate the distinct roles of p18(Ink4c) and p27(Kip1) in CDK4-mediated cell proliferation control.
Main Methods:
- Generation and analysis of double-mutant mice lacking both p18(Ink4c) and Cdk4 genes.
- Comparison of phenotypic abnormalities in single-mutant (p18(Ink4c) or Cdk4 deficient) and double-mutant mice.
- Analysis of p27(Kip1); Cdk4 double-mutant mice to contrast INK4 family member functions.
Main Results:
- In p18; Cdk4 double-mutant mice, the hyperplastic phenotypes observed in p18-deficient mice were completely abrogated across multiple organs.
- The phenotypes of p18; Cdk4 double-mutant mice closely resembled those of Cdk4 single-mutant mice.
- p27; Cdk4 double-mutant mice exhibited intermediate phenotypes, suggesting a distinct regulatory mechanism compared to p18(Ink4c).
Conclusions:
- p18(Ink4c) mediates cell growth suppression through CDK4 in a functionally dependent manner.
- p18(Ink4c) and p27(Kip1) act through CDK4 but likely transduce distinct cell proliferation signals.
- These findings provide critical genetic evidence for the hierarchical relationship between p18(Ink4c) and CDK4 in cell cycle regulation.
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