Transcription factor MEF2D is required for the maintenance of MLL-rearranged acute myeloid leukemia

Author:

Zhao Lianzhong12,Zhang Pengcheng12,Galbo Phillip M.3ORCID,Zhou Xinyue12,Aryal Sajesan12,Qiu Shaowei12,Zhang Hao12,Zhou Yang4ORCID,Li Chunliang5ORCID,Zheng Deyou367ORCID,Bhatia Ravi12,Lu Rui12ORCID

Affiliation:

1. Division of Hematology/Oncology, University of Alabama at Birmingham, Birmingham, AL;

2. O’Neal Comprehensive Cancer Center, University of Alabama at Birmingham, Birmingham, AL;

3. Department of Genetics, Albert Einstein College of Medicine, Bronx, NY;

4. Department of Biomedical Engineering, School of Medicine and School of Engineering, University of Alabama at Birmingham, Birmingham, AL;

5. Department of Tumor Cell Biology & Cancer Biology Program/Comprehensive Cancer Center, St. Jude Children’s Research Hospital, Memphis, TN;

6. Department of Neurology, Albert Einstein College of Medicine, Bronx, NY; and

7. Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY

Abstract

Abstract Acute myeloid leukemia (AML) with MLL-rearrangement (MLL-r) comprises ∼10% of all AML cases and portends poor outcomes. Much remains uncovered on how MLL-r AML drives leukemia development while preventing cells from normal myeloid differentiation. Here, we identified that transcription factor MEF2D is a super-enhancer-associated, highly expressed gene in MLL-r AML. Knockout of MEF2D profoundly impaired leukemia growth, induced myeloid differentiation, and delayed oncogenic progression in vivo. Mechanistically, MEF2D loss led to robust activation of a CEBPE-centered myeloid differentiation program in AML cells. Chromatin profiling revealed that MEF2D binds to and suppresses the chromatin accessibility of CEBPE cis-regulatory regions. In human acute leukemia samples, MEF2D expression showed a strong negative correlation with the expression of CEBPE. Depletion of CEBPE partially rescued the cell growth defect and myeloid cell differentiation induced by the loss of MEF2D. Lastly, we show that MEF2D is positively regulated by HOXA9, and downregulation of MEF2D is an important mechanism for DOT1L inhibitor-induced antileukemia effects. Collectively, our findings suggest that MEF2D plays a critical role in human MLL-r AML and uncover the MEF2D-CEBPE axis as a crucial transcriptional mechanism regulating leukemia cell self-renewal and differentiation block.

Publisher

American Society of Hematology

Subject

Hematology

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