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CDX2-driven leukemogenesis involves KLF4 repression and deregulated PPARγ signaling
Katrin Faber, … , Claudia Scholl, Stefan Fröhling
Katrin Faber, … , Claudia Scholl, Stefan Fröhling
Published December 3, 2012
Citation Information: J Clin Invest. 2013;123(1):299-314. https://doi.org/10.1172/JCI64745.
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Research Article Oncology

CDX2-driven leukemogenesis involves KLF4 repression and deregulated PPARγ signaling

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Abstract

Aberrant expression of the homeodomain transcription factor CDX2 occurs in most cases of acute myeloid leukemia (AML) and promotes leukemogenesis, making CDX2, in principle, an attractive therapeutic target. Conversely, CDX2 acts as a tumor suppressor in colonic epithelium. The effectors mediating the leukemogenic activity of CDX2 and the mechanism underlying its context-dependent properties are poorly characterized, and strategies for interfering with CDX2 function in AML remain elusive. We report data implicating repression of the transcription factor KLF4 as important for the oncogenic activity of CDX2, and demonstrate that CDX2 differentially regulates KLF4 in AML versus colon cancer cells through a mechanism that involves tissue-specific patterns of promoter binding and epigenetic modifications. Furthermore, we identified deregulation of the PPARγ signaling pathway as a feature of CDX2-associated AML and observed that PPARγ agonists derepressed KLF4 and were preferentially toxic to CDX2+ leukemic cells. These data delineate transcriptional programs associated with CDX2 expression in hematopoietic cells, provide insight into the antagonistic duality of CDX2 function in AML versus colon cancer, and suggest reactivation of KLF4 expression, through modulation of PPARγ signaling, as a therapeutic modality in a large proportion of AML patients.

Authors

Katrin Faber, Lars Bullinger, Christine Ragu, Angela Garding, Daniel Mertens, Christina Miller, Daniela Martin, Daniel Walcher, Konstanze Döhner, Hartmut Döhner, Rainer Claus, Christoph Plass, Stephen M. Sykes, Steven W. Lane, Claudia Scholl, Stefan Fröhling

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Figure 1

Identification of candidate downstream effectors of CDX2 in myeloid leukemogenesis.

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Identification of candidate downstream effectors of CDX2 in myeloid leuk...
(A) Top 50 differentially expressed genes between murine c-Kit+Lin– cells transduced with Cdx2 or an empty control vector. Samples 1–3 indicate biological replicates. (B) Comparison of genes differentially expressed between human AML samples with high (fourth quartile) versus low (first quartile) CDX2 mRNA levels and murine c-Kit+Lin– cells transduced with Cdx2 or an empty control vector. (C) Genes regulated in the same direction between the human and mouse gene expression signatures. (D) Identification of KLF4 and G0S2 outlier expression in human AML samples with high CDX2 mRNA levels using COPA. Outliers at the 95th percentile are indicated in red.

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