Chromosome translocation to generate the TEL-AML1 (also known as ETV6-RUNX1) chimeric fusion gene is a frequent and early or initiating event in childhood acute lymphoblastic leukemia (ALL). Our starting hypothesis was that the TEL-AML1 protein generates and maintains preleukemic clones and that conversion to overt disease requires secondary genetic changes, possibly in the context of abnormal immune responses. Here, we show that a murine B cell progenitor cell line expressing inducible TEL-AML1 proliferates at a slower rate than parent cells but is more resistant to further inhibition of proliferation by TGF-β. This facilitates the competitive expansion of TEL-AML1–expressing cells in the presence of TGF-β. Further analysis indicated that TEL-AML1 binds to a principal TGF-β signaling target, Smad3, and compromises its ability to activate target promoters. In mice expressing a TEL-AML1 transgene, early, pre-pro-B cells were increased in number and also showed reduced sensitivity to TGF-β–mediated inhibition of proliferation. Moreover, expression of TEL-AML1 in human cord blood progenitor cells led to the expansion of a candidate preleukemic stem cell population that had an early B lineage phenotype (CD34+CD38–CD19+) and a marked growth advantage in the presence of TGF-β. Collectively, these data suggest a plausible mechanism by which dysregulated immune responses to infection might promote the malignant evolution of TEL-AML1–expressing preleukemic clones.
Anthony M. Ford, Chiara Palmi, Clara Bueno, Dengli Hong, Penny Cardus, Deborah Knight, Giovanni Cazzaniga, Tariq Enver, Mel Greaves
Title and authors | Publication | Year |
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A Human IPS Model Implicates Embryonic B-Myeloid Fate Restriction as Developmental Susceptibility to B Acute Lymphoblastic Leukemia-Associated ETV6-RUNX1
C Böiers, SE Richardson, E Laycock, A Zriwil, VA Turati, J Brown, JP Wray, D Wang, C James, J Herrero, E Sitnicka, S Karlsson, AJ Smith, SE Jacobsen, T Enver |
Developmental Cell | 2018 |
Autophagy inhibition as a potential future targeted therapy for ETV6-RUNX1-driven B-cell precursor acute lymphoblastic leukemia
R Polak, MB Bierings, CS van der Leije, MA Sanders, O Roovers, JR Marchante, JM Boer, JJ Cornelissen, R Pieters, ML den Boer, M Buitenhuis |
Haematologica | 2018 |
A causal mechanism for childhood acute lymphoblastic leukaemia.
Greaves M |
Nature reviews. Cancer | 2018 |