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Disruption of wnt/b-catenin exerts antileukemia activity and synergizes with flt3 inhibition in flt3-mutant acute myeloid leukemia

  • Xuejie Jiang
    ,
  • Po Yee Mak
    ,
  • Hong Mu
    ,
  • Wenjing Tao
    ,
  • Duncan H. Mak
    ,
  • Steven Kornblau
*Corresponding author for this work
  • University of Texas MD Anderson Cancer Center
    ,
  • Southern Medical University
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Abstract

Purpose: Wnt/b-catenin signaling is required for leukemic stem cell function. FLT3 mutations are frequently observed in acute myeloid leukemia (AML). Anomalous FLT3 signaling increases b-catenin nuclear localization and transcriptional activity. FLT3 tyrosine kinase inhibitors (TKI) are used clinically to treat FLT3-mutated AML patients, but with limited efficacy. We investigated the antileukemia activity of combined Wnt/b-catenin and FLT3 inhibition in FLT3-mutant AML. Experimental Design: Wnt/b-catenin signaling was inhibited by the b-catenin/CBP antagonist C-82/PRI-724 or siRNAs, and FLT3 signaling by sorafenib or quizartinib. Treatments on apoptosis, cell growth, and cell signaling were assessed in cell lines, patient samples, and in vivo in immunodeficient mice by flow cytometry, Western blot, RT-PCR, and CyTOF. Results: We found significantly higher b-catenin expression in cytogenetically unfavorable and relapsed AML patient samples and in the bone marrow–resident leukemic cells compared with circulating blasts. Disrupting Wnt/b-catenin signaling suppressed AML cell growth, induced apoptosis, abrogated stromal protection, and synergized with TKIs in FLT3-mutated AML cells and stem/progenitor cells in vitro. The aforementioned combinatorial treatment improved survival of AML-xenografted mice in two in vivo models and impaired leukemia cell engraftment. Mechanistically, the combined inhibition of Wnt/b-catenin and FLT3 cooperatively decreased nuclear b-catenin and the levels of c-Myc and other Wnt/b-catenin and FLT3 signaling proteins. Importantly, b-catenin inhibition abrogated the microenvironmental protection afforded the leukemic stem/progenitor cells. Conclusions: Disrupting Wnt/b-catenin signaling exerts potent activities against AML stem/progenitor cells and synergizes with FLT3 inhibition in FLT3-mutant AML. These findings provide a rationale for clinical development of this strategy for treating FLT3-mutated AML patients.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 2417-2429 (13 pages)

Journal (Volume, Issue Number)

Clinical Cancer Research (Volume 24, Issue 10)

Publication milestones

  • Published - 05/15/2018

Publication status

Published - 05/15/2018

ISSN

1078-0432

Publication IDs

  • Scopus: 85045546270
  • PubMed: 29463558
  • ORCID: /0000-0002-8636-1071/work/68888249
  • ORCID: /0000-0002-2077-3188/work/117466082

Publication metrics

Metrics

Fractional count
2
Fractional count
0.11
Fractional count
16
Fractional count
0.89
Fractional count
2
Fractional count
1
SciVal
citations
25
SciVal
FWCI
2.16
SciVal
Author count
18
SciVal
Paper percentile
94
SciVal
Top percentile
10
Scopus
citations

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Citation count
85
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80

Funding Details

The authors thank Dr. Numsen Hail for assisting with the manuscript preparation and PRISM Pharma for providing C-82 and PRI-724. This work was supported by the Ryan Gibson Foundation and PRISM Pharma/Eisai research funding to B.Z. Carter, grants from the NIH (CA055164), the MD Anderson Cancer Center Support Grant (CA016672), Cancer Prevention Research Institute of Texas (CPRIT, RP121010), and the Paul and Mary Haas Chair in Genetics to M. Andreeff. B.Z. Carter reports receiving commercial research grants from Prism Pharma and Eisai. No potential conflicts of interest were disclosed by the other authors.