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The forkhead transcription factor FOXO3a increases phosphoinositide-3 kinase/Akt activity in drug-resistant leukemic cells through induction of PIK3CA expression

Hui, Rosaline C.-Y. and Gomes, Ana R. and Constantinidou, Demetra and Costa, Joana R. and Karadedou, Christina T. and Fernandez de Mattos, Silvia and Wymann, Matthias P. and Brosens, Jan J. and Schulze, Almut and Lam, Eric W.-F.. (2008) The forkhead transcription factor FOXO3a increases phosphoinositide-3 kinase/Akt activity in drug-resistant leukemic cells through induction of PIK3CA expression. Molecular and Cellular Biology, 28 (19). pp. 5886-5898.

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Official URL: https://edoc.unibas.ch/63328/

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Abstract

The phosphoinositide-3 kinase (PI3K)/Akt signal pathway plays a key role in the tumorigenesis of many cancers and in the subsequent development of drug resistance. Using the K562 chronic myelogenous leukemia (CML) cell line and the doxorubicin-resistant derivative lines KD30 and KD225 as models, we observed that enhanced PI3K/Akt activity and the acquisition of chemoresistance correlated unexpectedly with the increased expression and nuclear accumulation of FOXO3a. Moreover, we found that the induction of FOXO3a activity in naïve K562 cells was sufficient to enhance PI3K/Akt activity and to confer resistance to the cytotoxic effects of doxorubicin. Conversely, the knockdown of endogenous FOXO3a expression reduced PI3K/Akt activity and sensitized these cells to doxorubicin. Further chromatin immunoprecipitation and promoter mutation analyses demonstrated that FOXO3a regulates the expression of the PI3K catalytic subunit p110alpha through the activation of a promoter region proximal to a novel untranslated exon upstream from the reported transcription start site of the p110alpha gene PIK3CA. As was the case for FOXO3a, the expression or knockdown of p110alpha was sufficient to amplify or reduce PI3K/Akt activity, respectively. Thus, our results suggest that the chronic activation of FOXO3a by doxorubicin in CML cells can enhance survival through a feedback mechanism that involves enhanced p110alpha expression and hyperactivation of the PI3K/Akt pathway.
Faculties and Departments:03 Faculty of Medicine > Departement Biomedizin > Division of Biochemistry and Genetics > Cancer- and Immunobiology (Wymann)
UniBasel Contributors:Wymann, Matthias P.
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:American Society for Microbiology
ISSN:0270-7306
e-ISSN:1098-5549
Note:Publication type according to Uni Basel Research Database: Journal article
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Last Modified:11 Aug 2020 13:32
Deposited On:11 Aug 2020 13:32

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