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Intrinsic resistance to PIM kinase inhibition in AML through p38α-mediated feedback activation of mTOR signaling.

Diede Brunen ,
María José García-Barchino ,
Disha Malani ,
Noorjahan Jagalur Basheer ,
Cor Lieftink ,
Roderick L Beijersbergen ,
Astrid Murumägi ,
Kimmo Porkka ,
Maija Wolf ,
C Michel Zwaan ,
Maarten Fornerod ,
Olli Kallioniemi ,
José Ángel Martínez-Climent ,
René Bernards

Abstract

Although conventional therapies for acute myeloid leukemia (AML) and diffuse large B-cell lymphoma (DLBCL) are effective in inducing remission, many patients relapse upon treatment. Hence, there is an urgent need for novel therapies. PIM kinases are often overexpressed in AML and DLBCL and are therefore an attractive therapeutic target. However, in vitro experiments have demonstrated that intrinsic resistance to PIM inhibition is common. It is therefore likely that only a minority of patients will benefit from single agent PIM inhibitor treatment. In this study, we performed an shRNA-based genetic screen to identify kinases whose suppression is synergistic with PIM inhibition. Here, we report that suppression of p38α (MAPK14) is synthetic lethal with the PIM kinase inhibitor AZD1208. PIM inhibition elevates reactive oxygen species (ROS) levels, which subsequently activates p38α and downstream AKT/mTOR signaling. We found that p38α inhibitors sensitize hematological tumor cell lines to AZD1208 treatment in vitro and in vivo. These results were validated in ex vivo patient-derived AML cells. Our findings provide mechanistic and translational evidence supporting the rationale to test a combination of p38α and PIM inhibitors in clinical trials for AML and DLBCL.

More about this publication

Oncotarget

Volume 7
Issue nr. 25
Pages 37407-37419
Publication date 21-06-2016

Full text links

Publisher website (DOI) 10.18632/oncotarget.9822
Europe PubMed Central 27270648
Pubmed 27270648

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