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Updated: Apr 19, 2026

An In Vitro Model for Studying Cellular Transformation by Kaposi Sarcoma Herpesvirus
Published on: August 25, 2017
KSHV viral cyclin interferes with T-cell development and induces lymphoma through Cdk6 and Notch activation in vivo
Pirita Pekkonen1, Annika Järviluoma, Nadezhda Zinovkina
1a Institute of Biotechnology ; University of Helsinki ; Helsinki , Finland.
Abstract:
Kaposi's sarcoma herpesvirus (KSHV)-encoded v-cyclin, a homolog of cellular cyclin D2, activates cellular CDK6, promotes G1-S transition of the cell cycle, induces DNA damage, apoptosis, autophagy and is reported to have oncogenic potential. Here we show that in vivo expression of v-cyclin in the B- and T-cell lymphocyte compartments results in a markedly low survival due to high penetrance of early-onset T-cell lymphoma and pancarditis. The v-cyclin transgenic mice have smaller pre-tumorigenic lymphoid organs, showing decreased cellularity, and increased proliferation and apoptosis. Furthermore, v-cyclin expression resulted in decreased amounts of CD3-expressing mature T-cells in the secondary lymphoid organs concurrent with alterations in the T-cell subpopulations of the thymus. This suggests that v-cyclin interferes with normal T-cell development. As the Notch pathway is recognized for its role in both T-cell development and lymphoma initiation, we addressed the role of Notch in the v-cyclin-induced alterations. Fittingly, we demonstrate induction of Notch3 and Hes1 in the pre-tumorigenic thymi and lymphomas of v-cyclin expressing mice, and show that lymphoma growth and viability are dependent on activated Notch signaling. Notch3 transcription and growth of the lymphomas was dependent on CDK6, as determined by silencing of CDK6 expression or chemical inhibition, respectively. Our work here reveals a viral cyclin-CDK6 complex as an upstream regulator of Notch receptor, suggesting that cyclins can play a role in the initiation of Notch-dependent lymphomagenesis.
Insights
Kaposi
Area of Science:
- Virology
- Immunology
- Oncology
Background:
- Kaposi's sarcoma herpesvirus (KSHV)-encoded v-cyclin, a homolog of cyclin D2, activates CDK6, promoting cell cycle progression and exhibiting oncogenic potential.
- v-cyclin's role in T-cell lymphoma and its interaction with the Notch pathway in vivo remain incompletely understood.
Purpose of the Study:
- To investigate the in vivo effects of v-cyclin expression on lymphocyte development and survival.
- To elucidate the role of the Notch pathway in v-cyclin-induced T-cell lymphoma development.
Main Methods:
- Generation of v-cyclin transgenic mice with expression in B- and T-cell compartments.
- Analysis of lymphoid organ cellularity, cell proliferation, apoptosis, and T-cell subpopulations.
- Assessment of Notch pathway components (Notch3, Hes1) and CDK6 dependence in lymphomas.
Main Results:
- In vivo v-cyclin expression led to reduced survival, early-onset T-cell lymphoma, and pancarditis.
- v-cyclin disrupted T-cell development, indicated by altered thymic subpopulations and reduced mature T-cells.
- Notch3 and Hes1 were induced in lymphomas, and their signaling, along with lymphoma growth, was dependent on CDK6.
Conclusions:
- Viral v-cyclin-CDK6 complex acts as an upstream regulator of the Notch pathway.
- This viral cyclin-CDK6-Notch axis plays a critical role in initiating Notch-dependent lymphomagenesis.
- v-cyclin contributes to T-cell lymphoma development through modulation of T-cell development and Notch signaling.
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