Combinatorial ETS1-dependent control of oncogenic NOTCH1 enhancers in T-cell leukemia

Notch activation is highly prevalent among cancers, in particular T-cell acute lymphoblastic leukemia (T-ALL). However, the use of pan-Notch inhibitors to treat cancers has been hampered by adverse effects, particularly intestinal toxicities. To circumvent this barrier in T-ALL, we aimed to inhibit...

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Veröffentlicht in:Blood cancer discovery 2020-09, Vol.1 (2), p.178-197
Hauptverfasser: McCarter, Anna C, Della Gatta, Giusy, Melnick, Ashley, Kim, Erin, Sha, Cher, Wang, Qing, Nalamolu, Jahnavi K, Liu, Yiran, Keeley, Theresa M, Yan, Ran, Sun, Mengxi, Kodgule, Rohan, Kunnath, Nicholas, Ambesi-Impiombato, Alberto, Kuick, Rork, Rao, Arvind, Ryan, Russell J H, Kee, Barbara L, Samuelson, Linda C, Ostrowski, Michael C, Ferrando, Adolfo A, Chiang, Mark Y
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Sprache:eng
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Zusammenfassung:Notch activation is highly prevalent among cancers, in particular T-cell acute lymphoblastic leukemia (T-ALL). However, the use of pan-Notch inhibitors to treat cancers has been hampered by adverse effects, particularly intestinal toxicities. To circumvent this barrier in T-ALL, we aimed to inhibit ETS1, a developmentally important T-cell transcription factor previously shown to co-bind Notch response elements. Using complementary genetic approaches in mouse models, we show that ablation of Ets1 leads to strong Notch-mediated suppressive effects on T-cell development and leukemogenesis, but milder intestinal effects than pan-Notch inhibitors. Mechanistically, genome-wide chromatin profiling studies demonstrate that Ets1 inactivation impairs recruitment of multiple Notch-associated factors and Notch-dependent activation of transcriptional elements controlling major Notch-driven oncogenic effector pathways. These results uncover previously unrecognized hierarchical heterogeneity of Notch-controlled genes and points to Ets1-mediated enucleation of Notch-Rbpj transcriptional complexes as a target for developing specific anti-Notch therapies in T-ALL that circumvent the barriers of pan-Notch inhibition.
ISSN:2643-3230
2643-3249
DOI:10.1158/2643-3230.BCD-20-0026