In vivo E2F reporting reveals efficacious schedules of MEK1/2–CDK4/6 targeting and mTOR–s6 resistance mechanisms

Jessica L.F. Teh, Phil F. Cheng, Timothy J. Purwin, Neda Nikbakht, Prem Patel, Inna Chervoneva, Adam Ertel, Paolo M. Fortina, Ines Kleiber, Kim HooKim, Michael A. Davies, Lawrence N. Kwong, Mitch P. Levesque, Reinhard Dummer, Andrew E. Aplin

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

Targeting cyclin-dependent kinases 4/6 (CDK4/6) represents a therapeutic option in combination with BRAF inhibitor and/or MEK inhibitor (MEKi) in melanoma; however, continuous dosing elicits toxicities in patients. Using quantitative and temporal in vivo reporting, we show that continuous MEKi with intermittent CDK4/6 inhibitor (CDK4/6i) led to more complete tumor responses versus other combination schedules. Nevertheless, some tumors acquired resistance that was associated with enhanced phosphorylation of ribosomal S6 protein. These data were supported by phospho-S6 staining of melanoma biopsies from patients treated with CDK4/6i plus targeted inhibitors. Enhanced phospho-S6 in resistant tumors provided a therapeutic window for the mTORC1/2 inhibitor AZD2014. Mechanistically, upregulation or mutation of NRAS was associated with resistance in in vivo models and patient samples, respectively, and mutant NRAS was sufficient to enhance resistance. This study utilizes an in vivo reporter model to optimize schedules and supports targeting mTORC1/2 to overcome MEKi plus CDK4/6i resistance. SIGnIFICAnCE: Mutant BRAF and NRAS melanomas acquire resistance to combined MEK and CDK4/6 inhibition via upregulation of mTOR pathway signaling. This resistance mechanism provides the preclinical basis to utilize mTORC1/2 inhibitors to improve MEKi plus CDK4/6i drug regimens.

Original languageEnglish (US)
Pages (from-to)568-581
Number of pages14
JournalCancer discovery
Volume8
Issue number5
DOIs
StatePublished - May 2018

ASJC Scopus subject areas

  • Oncology

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