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Series GSE36921 Query DataSets for GSE36921
Status Public on Jan 30, 2014
Title Effect of genetic Zfx deletion on gene expression in c-Kit + MLL-AF9 AML cells
Organism Mus musculus
Experiment type Expression profiling by array
Summary Acute myeloid leukemia (AML) propagates as a cellular hierarchy which is maintained by a rare subpopulation of self-renewing leukemia-initiating cells (LICs). These LICs phenotypically resemble HSCs and early myeloid progenitors, and they are functionally defined by their ability to reconstitute AML in xenografted mice.
Common transcriptional regulators are believed to drive self-renewal of LICs and normal stem cells. Examples include the histone methyltransferase, MLL and its main targets, the transcription factors HOXA9 and MEIS1; the polycomb group protein, BMI-1; and the Wnt/β-catenin signaling pathway4-9. In AML patients, LICs have been shown to share broad gene expression signatures with hematopoietic stem cells (HSCs) and, in some cases, with embryonic stem cells (ESCs). Moreover, increased expression of these stem cell signatures has been linked to tumor aggressiveness.
Elucidating the molecular determinants of stem cell properties in LICs has the potential to improve AML therapy and clarify the relationship between cancer and stem cell biology in general. Here we show that the propagation of LICs in AML depends on Zfx, a transcription factor required for the self-renewal of ESCs and HSCs. Using mouse models, we found that Zfx is required for AML propagation and LIC maintenance. We defined a Zfx-driven gene expression program in murine LICs that correlates with existing stem cell-related gene expression signatures in AML patients. Using a novel, stroma-based RNAi screening strategy, we identified functionally important Zfx target genes. Two of these genes – FAM92A1 and DOCK7 - are required for human AML cell propagation; moreover, their expression levels strongly correlate with AML patient survival across the full spectrum of AML subtypes. Together, our results characterize a novel gene expression program that orchestrates critical stem cell properties of LICs, and drives aggressiveness of AML.
 
Overall design Independent primary MLL-AF9 AML cell lines were created carrying the tamoxifen inducible Cre-ER transgene and either the Zfx wild-type (wt/y) (lines 10977, 10980) or the Zfx conditional (Zfx fl/y) allele (lines 10949, 10950, 10986). AML cells generated from each line were isolated from moribund mice and cultured with or without 4-hydroxytamoxifen for 72 hours to induce Cre. After Cre induction, c-Kit + cells were purified by FACS and processed for microarray studies.
 
Contributor(s) Weisberg SP, Reizis BV
Citation(s) 24485662
Submission date Mar 29, 2012
Last update date Mar 04, 2019
Contact name Stuart Weisberg
E-mail(s) spw13@cumc.columbia.edu
Organization name Columbia University
Department Pathology and Cell Biology
Lab Weisberg
Street address 650 W 168th Street
City New York
State/province NY
ZIP/Postal code 10032
Country USA
 
Platforms (1)
GPL6246 [MoGene-1_0-st] Affymetrix Mouse Gene 1.0 ST Array [transcript (gene) version]
Samples (10)
GSM906327 Zfx fl MA9 cells + Vehicle [10949]
GSM906328 Zfx fl MA9 cells + 4-OHT [10949]
GSM906329 Zfx fl MA9 cells + Vehicle [10950]
This SubSeries is part of SuperSeries:
GSE43022 ZFX controls the propagation and cell-of-origin characteristics of acute leukemia
Relations
BioProject PRJNA157097

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE36921_RAW.tar 45.1 Mb (http)(custom) TAR (of CEL)
Processed data included within Sample table

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