Characterization of the genome-wide TLX1 binding profile in T-cell acute lymphoblastic leukemia

被引:0
作者
K Durinck
W Van Loocke
J Van der Meulen
I Van de Walle
M Ongenaert
P Rondou
A Wallaert
C E de Bock
N Van Roy
B Poppe
J Cools
J Soulier
T Taghon
F Speleman
P Van Vlierberghe
机构
[1] Center for Medical Genetics,Department of Pediatrics and Genetics
[2] Ghent University,Department of Clinical Chemistry
[3] Microbiology and Immunology,undefined
[4] Ghent University,undefined
[5] Laboratory for the Molecular Biology of Leukemia,undefined
[6] Center for Human Genetics,undefined
[7] KU Leuven and Center for the Biology of Disease,undefined
[8] VIB,undefined
[9] Genome Rearrangements and Cancer Laboratory,undefined
[10] U944 INSERM,undefined
[11] University Paris Diderot and Hematology Laboratory,undefined
[12] Saint-Louis Hospital,undefined
来源
Leukemia | 2015年 / 29卷
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摘要
The TLX1 transcription factor is critically involved in the multi-step pathogenesis of T-cell acute lymphoblastic leukemia (T-ALL) and often cooperates with NOTCH1 activation during malignant T-cell transformation. However, the exact molecular mechanism by which these T-cell specific oncogenes cooperate during transformation remains to be established. Here, we used chromatin immunoprecipitation followed by sequencing to establish the genome-wide binding pattern of TLX1 in human T-ALL. This integrative genomics approach showed that ectopic TLX1 expression drives repression of T cell-specific enhancers and mediates an unexpected transcriptional antagonism with NOTCH1 at critical target genes, including IL7R and NOTCH3. These phenomena coordinately trigger a TLX1-driven pre-leukemic phenotype in human thymic precursor cells, reminiscent of the thymus regression observed in murine TLX1 tumor models, and create a strong genetic pressure for acquiring activating NOTCH1 mutations as a prerequisite for full leukemic transformation. In conclusion, our results uncover a functional antagonism between cooperative oncogenes during the earliest phases of tumor development and provide novel insights in the multi-step pathogenesis of TLX1-driven human leukemia.
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页码:2317 / 2327
页数:10
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