Different roles of E proteins in t(8;21) leukemia: E2-2 compromises the function of AETFC and negatively regulates leukemogenesis

Author:

Liu Na,Song Junhong,Xie Yangyang,Wang Xiao-Lin,Rong Bowen,Man Na,Zhang Meng-Meng,Zhang Qunling,Gao Fei-Fei,Du Mei-Rong,Zhang Ying,Shen Jian,Xu Chun-Hui,Hu Cheng-Long,Wu Ji-Chuan,Liu Ping,Zhang Yuan-Liang,Xie Yin-Yin,Liu Ping,Huang Jin-YanORCID,Huang Qiu-Hua,Lan Fei,Shen Shuhong,Nimer Stephen D.,Chen Zhu,Chen Sai-Juan,Roeder Robert G.,Wang Lan,Sun Xiao-JianORCID

Abstract

The AML1-ETO fusion protein, generated by the t(8;21) chromosomal translocation, is causally involved in nearly 20% of acute myeloid leukemia (AML) cases. In leukemic cells, AML1-ETO resides in and functions through a stable protein complex, AML1-ETO–containing transcription factor complex (AETFC), that contains multiple transcription (co)factors. Among these AETFC components, HEB and E2A, two members of the ubiquitously expressed E proteins, directly interact with AML1-ETO, confer new DNA-binding capacity to AETFC, and are essential for leukemogenesis. However, the third E protein, E2-2, is specifically silenced in AML1-ETO–expressing leukemic cells, suggesting E2-2 as a negative factor of leukemogenesis. Indeed, ectopic expression of E2-2 selectively inhibits the growth of AML1-ETO–expressing leukemic cells, and this inhibition requires the bHLH DNA-binding domain. RNA-seq and ChIP-seq analyses reveal that, despite some overlap, the three E proteins differentially regulate many target genes. In particular, studies show that E2-2 both redistributes AETFC to, and activates, some genes associated with dendritic cell differentiation and represses MYC target genes. In AML patients, the expression of E2-2 is relatively lower in the t(8;21) subtype, and an E2-2 target gene, THPO, is identified as a potential predictor of relapse. In a mouse model of human t(8;21) leukemia, E2-2 suppression accelerates leukemogenesis. Taken together, these results reveal that, in contrast to HEB and E2A, which facilitate AML1-ETO–mediated leukemogenesis, E2-2 compromises the function of AETFC and negatively regulates leukemogenesis. The three E proteins thus define a heterogeneity of AETFC, which improves our understanding of the precise mechanism of leukemogenesis and assists development of diagnostic/therapeutic strategies.

Funder

National Key Research and Development Plan of China

Chinese Academy of Sciences (CAS) Bureau of Frontier Sciences and Education Program

National Natural Science Foundation of China (NSFC) General Program

National Natural Science Foundation of China (NSFC) Excellent Young Scholar Program

Chinese National Key Basic Research Project

National Institutes of Health (NIH) of USA R01 grant

Shanghai Municipal Education Commission-Gaofeng Clinical Medicine Grant

Chinese Academy of Sciences Bureau of Major R&D Program

Shanghai Pudong Innovation Fund

fourth round of Three Year Public Health Action Plan

Shanghai Municipal Science and Technology Major Project

111 Project

Samuel Waxman Cancer Research Foundation

1000 Talents Program for Young Scholars

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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