Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
2106930 | Cancer Cell | 2015 | 15 Pages |
Abstract
Alterations of IKZF1, encoding the lymphoid transcription factor IKAROS, are a hallmark of high-risk acute lymphoblastic leukemia (ALL), however the role of IKZF1 alterations in ALL pathogenesis is poorly understood. Here, we show that in mouse models of BCR-ABL1 leukemia, Ikzf1 and Arf alterations synergistically promote the development of an aggressive lymphoid leukemia. Ikzf1 alterations result in acquisition of stem cell-like features, including self-renewal and increased bone marrow stromal adhesion. Retinoid receptor agonists reversed this phenotype, partly by inducing expression of IKZF1, resulting in abrogation of adhesion and self-renewal, cell cycle arrest, and attenuation of proliferation without direct cytotoxicity. Retinoids potentiated the activity of dasatinib in mouse and human BCR-ABL1 ALL, providing an additional therapeutic option in IKZF1-mutated ALL.
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Authors
Michelle L. Churchman, Jonathan Low, Chunxu Qu, Elisabeth M. Paietta, Lawryn H. Kasper, Yunchao Chang, Debbie Payne-Turner, Mark J. Althoff, Guangchun Song, Shann-Ching Chen, Jing Ma, Michael Rusch, Dan McGoldrick, Michael Edmonson, Pankaj Gupta,