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Therapeutic targeting of Polo-like kinase-1 and Aurora kinases in T-cell acute lymphoblastic leukemia
Authors:Antonino Maria Spartà  Daniela Bressanin  Francesca Chiarini  Annalisa Lonetti  Alessandra Cappellini  Cecilia Evangelisti
Institution:1. Department of Biomedical and Neuromotor Sciences;2. University of Bologna;3. Bologna, Italy;4. Institute of Molecular Genetics;5. National Research Council;6. Muscoloskeletal Cell Biology Laboratory;7. IOR;8. Department of Human, Social, and Health Sciences;9. University of Cassino;10. Cassino, Italy
Abstract:Polo-like kinases (PLKs) and Aurora kinases (AKs) act as key cell cycle regulators in healthy human cells. In cancer, these protein kinases are often overexpressed and dysregulated, thus contributing to uncontrolled cell proliferation and growth. T-cell acute lymphoblastic leukemia (T-ALL) is a heterogeneous malignancy arising in the thymus from T-cell progenitors. Primary chemoresistant and relapsed T-ALL patients have yet a poor outcome, therefore novel therapies, targeting signaling pathways important for leukemic cell proliferation, are required. Here, we demonstrate the potential therapeutic effects of BI6727, MK-5108, and GSK1070916, three selective inhibitors of PLK1, AK-A, and AK-B/C, respectively, in a panel of T-ALL cell lines and primary cells from T-ALL patients. The drugs were both cytostatic and cytotoxic to T-ALL cells by inducing G2/M-phase arrest and apoptosis. The drugs retained part of their pro-apoptotic activity in the presence of MS-5 bone marrow stromal cells. Moreover, we document for the first time that BI6727 perturbed both the PI3K/Akt/mTORC2 and the MEK/ERK/mTORC1 signaling pathways, and that a combination of BI6727 with specific inhibitors of the aforementioned pathways (MK-2206, CCI-779) displayed significantly synergistic cytotoxic effects. Taken together, our findings indicate that PLK1 and AK inhibitors display the potential for being employed in innovative therapeutic strategies for improving T-ALL patient outcome.
Keywords:polo-like kinases  Aurora kinases  T-ALL  cell cycle  apoptosis  caspases  PI3K/Akt/mTORC2  MEK/ERK/mTORC1
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