Functional characterization of cooperating MGA mutations in RUNX1::RUNX1T1 acute myeloid leukemia

被引:0
作者
Melvin E. Thomas
Wenqing Qi
Michael P. Walsh
Jing Ma
Tamara Westover
Sherif Abdelhamed
Lauren J. Ezzell
Chandra Rolle
Emily Xiong
Wojciech Rosikiewicz
Beisi Xu
Allister J. Loughran
Shondra M. Pruett-Miller
Laura J. Janke
Jeffery M. Klco
机构
[1] Department of Pathology,Graduate School of Biomedical Sciences
[2] St. Jude Children’s Research Hospital,Center for Applied Bioinformatics
[3] St. Jude Children’s Research Hospital,Center for Advanced Genome Engineering
[4] St. Jude Children’s Research Hospital,undefined
[5] St. Jude Children’s Research Hospital,undefined
来源
Leukemia | 2024年 / 38卷
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摘要
MGA (Max-gene associated) is a dual-specificity transcription factor that negatively regulates MYC-target genes to inhibit proliferation and promote differentiation. Loss-of-function mutations in MGA have been commonly identified in several hematological neoplasms, including acute myeloid leukemia (AML) with RUNX1::RUNX1T1, however, very little is known about the impact of these MGA alterations on normal hematopoiesis or disease progression. We show that representative MGA mutations identified in patient samples abolish protein-protein interactions and transcriptional activity. Using a series of human and mouse model systems, including a newly developed conditional knock-out mouse strain, we demonstrate that loss of MGA results in upregulation of MYC and E2F targets, cell cycle genes, mTOR signaling, and oxidative phosphorylation in normal hematopoietic cells, leading to enhanced proliferation. The loss of MGA induces an open chromatin state at promoters of genes involved in cell cycle and proliferation. RUNX1::RUNX1T1 expression in Mga-deficient murine hematopoietic cells leads to a more aggressive AML with a significantly shortened latency. These data show that MGA regulates multiple pro-proliferative pathways in hematopoietic cells and cooperates with the RUNX1::RUNX1T1 fusion oncoprotein to enhance leukemogenesis.
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页码:991 / 1002
页数:11
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