Related Experiment Videos
Loss of p27(Kip1) cooperates with cyclin E in T-cell lymphomagenesis
Christoph Geisen1, Holger Karsunky, Raif Yücel
1Institut für Zellbiologie, Universitätsklinikum Essen, Germany.
Abstract:
Cyclin E and p27(Kip1) are key regulators for cyclin-dependent kinases (Cdks) acting at the G1-/S-phase transition of the cell cycle. Whereas cyclin E is required for the activation of Cdk2, p27(Kip1) is a specific Cdk inhibitor and can block cell division. High levels of cyclin E and low levels of p27(Kip1) expression have been associated with malignant lymphomas in humans; the level of p27(Kip1) is even considered of prognostic significance. However, mice that lack p27(Kip1) do not develop any malignant lymphomas despite a pronounced lymphoid hyperplasia in thymus and spleen. We have previously described transgenic mice that carry a construct in which the cyclin E cDNA is under the control of the CD2 promoter/enhancer region and thus express high levels of cyclin E in the T-cell compartment (CD2-cyclin E). These animals are not predisposed for T-cell lymphomas in the absence of other cooperating events. Here we show that T-cells from CD2-cyclin E mice that at the same time are deficient for p27(Kip1) show a significantly higher Cdk2 activity than cells from wild-type or single mutant animals. Accordingly, a higher percentage of T cells in S/G2/M phase is found in CD2-cyclin E/p27(Kip1-/-) mice. After a long latency period of over 200 days, these animals develop spontaneous monoclonal T cell lymphoma whereas none of the single CD2-cyclin E transgenic or the p27(Kip1)-deficient mice showed any sign of lymphoid malignancies. Our findings demonstrate that a deregulation of control mechanisms at the G1/S transition by the combination of high cyclin E levels in the absence of p27(Kip1) is sufficient to predispose mice to develop lymphoid malignancies and further support a role of p27(Kip1) as a tumor suppressor and of cyclin E as a dominant oncogene.
Insights
High cyclin E and low p27(Kip1) levels promote T-cell lymphoma in mice. This study shows that combining these genetic alterations is sufficient to cause lymphoid malignancies, highlighting p27(Kip1) as a tumor suppressor.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Cyclin E and p27(Kip1) regulate the G1-/S-phase cell cycle transition.
- High cyclin E and low p27(Kip1) are linked to human lymphomas.
- p27(Kip1) deficiency causes lymphoid hyperplasia but not lymphoma in mice.
Purpose of the Study:
- To investigate if combined cyclin E overexpression and p27(Kip1) deficiency induce T-cell lymphoma.
- To explore the roles of cyclin E and p27(Kip1) in lymphoid malignancy development.
Main Methods:
- Generated transgenic mice with CD2 promoter-driven cyclin E expression (CD2-cyclin E).
- Created CD2-cyclin E mice deficient for p27(Kip1) (CD2-cyclin E/p27(Kip1-/-)).
- Analyzed T-cell Cdk2 activity, cell cycle progression, and lymphoma development.
Main Results:
- CD2-cyclin E/p27(Kip1-/-) mice exhibited elevated Cdk2 activity and increased S/G2/M phase T-cells.
- These mice developed spontaneous monoclonal T-cell lymphomas after a latency period.
- Single mutant mice (CD2-cyclin E or p27(Kip1)-deficient) did not develop lymphomas.
Conclusions:
- Combined deregulation of G1/S transition (high cyclin E, absent p27(Kip1)) is sufficient for lymphoid malignancy.
- p27(Kip1) acts as a tumor suppressor in lymphoid development.
- Cyclin E functions as a dominant oncogene in this context.