Enhancer Hijacking Drives Oncogenic <i>BCL11B</i> Expression in Lineage-Ambiguous Stem Cell Leukemia

Lindsey E. Montefiori(St. Jude Children's Research Hospital), Sonja Bendig(Munich Leukemia Laboratory (Germany)), Zhaohui Gu(City of Hope), Xiaolong Chen(St. Jude Children's Research Hospital), Petri Pölönen(St. Jude Children's Research Hospital), Xiaotu Ma(St. Jude Children's Research Hospital), Alex Murison(University of Toronto), Andy G.X. Zeng(University of Toronto), Laura García‐Prat(University of Toronto), Kirsten Dickerson(St. Jude Children's Research Hospital), Ilaria Iacobucci(St. Jude Children's Research Hospital), Sherif Abdelhamed(St. Jude Children's Research Hospital), Ryan Hiltenbrand(St. Jude Children's Research Hospital), Paul E. Mead(St. Jude Children's Research Hospital), Cyrus M. Mehr(St. Jude Children's Research Hospital), Beisi Xu(St. Jude Children's Research Hospital), Zhongshan Cheng(St. Jude Children's Research Hospital), Ti‐Cheng Chang(St. Jude Children's Research Hospital), Tamara Westover(St. Jude Children's Research Hospital), Jing Ma(St. Jude Children's Research Hospital), Anna Stengel(Munich Leukemia Laboratory (Germany)), Shunsuke Kimura(St. Jude Children's Research Hospital), Chunxu Qu(St. Jude Children's Research Hospital), Marcus B. Valentine(St. Jude Children's Research Hospital), Marissa Rashkovan(Cancer Genetics (United States)), Selina M. Luger(University of Pennsylvania), Mark R. Litzow(Mayo Clinic), Jacob M. Rowe(Shaare Zedek Medical Center), Monique L. den Boer(Princess Máxima Center), Victoria Wang(Dana-Farber Cancer Institute), Jun Yin(Mayo Clinic), Steven M. Kornblau(The University of Texas MD Anderson Cancer Center), Stephen P. Hunger(Children's Hospital of Philadelphia), Mignon L. Loh(UCSF Helen Diller Family Comprehensive Cancer Center), Ching‐Hon Pui(St. Jude Children's Research Hospital), Wenjian Yang(St. Jude Children's Research Hospital), Kristine R. Crews(St. Jude Children's Research Hospital), Kathryn G. Roberts(St. Jude Children's Research Hospital), Jun J. Yang(St. Jude Children's Research Hospital), Mary V. Relling(St. Jude Children's Research Hospital), William E. Evans(St. Jude Children's Research Hospital), Wendy Stock(University of Chicago), Elisabeth Paietta(Montefiore Medical Center), Adolfo A. Ferrando(Columbia University Irving Medical Center), Jinghui Zhang(St. Jude Children's Research Hospital), Wolfgang Kern(Munich Leukemia Laboratory (Germany)), Torsten Haferlach(Munich Leukemia Laboratory (Germany)), Gang Wu(St. Jude Children's Research Hospital), John E. Dick(University of Toronto), Jeffery M. Klco(St. Jude Children's Research Hospital), Claudia Haferlach(Munich Leukemia Laboratory (Germany)), Charles G. Mullighan(St. Jude Children's Research Hospital)
Cancer Discovery
June 8, 2021
Cited by 186Open Access
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Abstract

Abstract Lineage-ambiguous leukemias are high-risk malignancies of poorly understood genetic basis. Here, we describe a distinct subgroup of acute leukemia with expression of myeloid, T lymphoid, and stem cell markers driven by aberrant allele-specific deregulation of BCL11B, a master transcription factor responsible for thymic T-lineage commitment and specification. Mechanistically, this deregulation was driven by chromosomal rearrangements that juxtapose BCL11B to superenhancers active in hematopoietic progenitors, or focal amplifications that generate a superenhancer from a noncoding element distal to BCL11B. Chromatin conformation analyses demonstrated long-range interactions of rearranged enhancers with the expressed BCL11B allele and association of BCL11B with activated hematopoietic progenitor cell cis-regulatory elements, suggesting BCL11B is aberrantly co-opted into a gene regulatory network that drives transformation by maintaining a progenitor state. These data support a role for ectopic BCL11B expression in primitive hematopoietic cells mediated by enhancer hijacking as an oncogenic driver of human lineage-ambiguous leukemia. Significance: Lineage-ambiguous leukemias pose significant diagnostic and therapeutic challenges due to a poorly understood molecular and cellular basis. We identify oncogenic deregulation of BCL11B driven by diverse structural alterations, including de novo superenhancer generation, as the driving feature of a subset of lineage-ambiguous leukemias that transcend current diagnostic boundaries. This article is highlighted in the In This Issue feature, p. 2659


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