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PTEN deletion drives acute myeloid leukemia resistance to MEK inhibitors.


ABSTRACT: Kinases such as MEK are attractive targets for novel therapy in cancer, including acute myeloid leukaemia (AML). Acquired and inherent resistance to kinase inhibitors, however, is becoming an increasingly important challenge for the clinical success of such therapeutics, and often arises from mutations in the drug-binding domain of the target kinase. To identify possible causes of resistance to MEK inhibition, we generated a model of resistance by long-term treatment of AML cells with AZD6244 (selumetinib). Remarkably, resistance to MEK inhibition was due to acquired PTEN haploinsufficiency, rather than mutation of MEK. Resistance via this mechanism was confirmed using CRISPR/Cas9 technology targeting exon 5 of PTEN. While PTEN loss has been previously implicated in resistance to a number of other therapeutic agents, this is the first time that it has been shown directly and in AML.

SUBMITTER: Smith AM 

PROVIDER: S-EPMC6791388 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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<i>PTEN</i> deletion drives acute myeloid leukemia resistance to MEK inhibitors.

Smith Amanda M AM   Zhang Christine R C CRC   Cristino Alexandre S AS   Grady John P JP   Fink J Lynn JL   Moore Andrew S AS  

Oncotarget 20191008 56


Kinases such as MEK are attractive targets for novel therapy in cancer, including acute myeloid leukaemia (AML). Acquired and inherent resistance to kinase inhibitors, however, is becoming an increasingly important challenge for the clinical success of such therapeutics, and often arises from mutations in the drug-binding domain of the target kinase. To identify possible causes of resistance to MEK inhibition, we generated a model of resistance by long-term treatment of AML cells with AZD6244 (s  ...[more]

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