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Updated: Apr 3, 2026

Pre-clinical Evaluation of Tyrosine Kinase Inhibitors for Treatment of Acute Leukemia
Published on: September 18, 2013
BET inhibitor resistance emerges from leukaemia stem cells
Chun Yew Fong1,2,3, Omer Gilan1,2, Enid Y N Lam1
1Cancer Research Division, Peter MacCallum Cancer Centre, East Melbourne, Victoria 3002, Australia.
Abstract:
Bromodomain and extra terminal protein (BET) inhibitors are first-in-class targeted therapies that deliver a new therapeutic opportunity by directly targeting bromodomain proteins that bind acetylated chromatin marks. Early clinical trials have shown promise, especially in acute myeloid leukaemia, and therefore the evaluation of resistance mechanisms is crucial to optimize the clinical efficacy of these drugs. Here we use primary mouse haematopoietic stem and progenitor cells immortalized with the fusion protein MLL-AF9 to generate several single-cell clones that demonstrate resistance, in vitro and in vivo, to the prototypical BET inhibitor, I-BET. Resistance to I-BET confers cross-resistance to chemically distinct BET inhibitors such as JQ1, as well as resistance to genetic knockdown of BET proteins. Resistance is not mediated through increased drug efflux or metabolism, but is shown to emerge from leukaemia stem cells both ex vivo and in vivo. Chromatin-bound BRD4 is globally reduced in resistant cells, whereas the expression of key target genes such as Myc remains unaltered, highlighting the existence of alternative mechanisms to regulate transcription. We demonstrate that resistance to BET inhibitors, in human and mouse leukaemia cells, is in part a consequence of increased Wnt/β-catenin signalling, and negative regulation of this pathway results in restoration of sensitivity to I-BET in vitro and in vivo. Together, these findings provide new insights into the biology of acute myeloid leukaemia, highlight potential therapeutic limitations of BET inhibitors, and identify strategies that may enhance the clinical utility of these unique targeted therapies.
Insights
Bromodomain and extra terminal protein (BET) inhibitors show promise for acute myeloid leukaemia. Resistance emerges from leukaemia stem cells, partly due to increased Wnt/β-catenin signaling, which can be targeted to restore drug sensitivity.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Bromodomain and extra terminal protein (BET) inhibitors are novel targeted therapies for cancer.
- Clinical trials show promise for BET inhibitors, particularly in acute myeloid leukaemia (AML).
- Understanding resistance mechanisms is critical for optimizing BET inhibitor efficacy.
Purpose of the Study:
- To investigate resistance mechanisms to the BET inhibitor I-BET in mouse haematopoietic stem and progenitor cells.
- To identify strategies to overcome BET inhibitor resistance in leukaemia.
Main Methods:
- Generated I-BET resistant single-cell clones from MLL-AF9 immortalized mouse haematopoietic stem and progenitor cells.
- Assessed cross-resistance to other BET inhibitors and genetic knockdown.
- Analyzed chromatin-bound BRD4 levels and key gene expression (e.g., Myc).
- Investigated the role of Wnt/β-catenin signaling in resistance.
Main Results:
- I-BET resistance conferred cross-resistance to other BET inhibitors and genetic knockdown.
- Resistance emerged from leukaemia stem cells and was not due to drug efflux or metabolism.
- Global reduction of chromatin-bound BRD4 was observed, with unaltered Myc expression.
- Increased Wnt/β-catenin signaling was identified as a key mechanism of resistance in both mouse and human leukaemia cells.
Conclusions:
- Resistance to BET inhibitors in AML is partly mediated by enhanced Wnt/β-catenin signaling.
- Targeting Wnt/β-catenin signaling can restore sensitivity to BET inhibitors.
- These findings offer insights into AML biology and suggest strategies to improve BET inhibitor therapy.
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