生物
癌症研究
异位表达
小RNA
髓系白血病
造血
祖细胞
MCL1
髓样
细胞周期
基因敲除
白血病
干细胞
细胞生物学
下调和上调
免疫学
细胞培养
细胞
遗传学
基因
作者
Stephan Emmrich,F Engeland,Mona El-Khatib,K Henke,Askar Obulkasim,Jennifer Schöning,Jenny E. Katsman-Kuipers,C. Michel Zwaan,Andreas Pich,Jan Starý,André Baruchel,Valérie de Haas,Dirk Reinhardt,Maarten Fornerod,Marry M. van den Heuvel‐Eibrink,Jan‐Henning Klusmann
出处
期刊:Oncogene
[Springer Nature]
日期:2015-07-13
卷期号:35 (14): 1822-1831
被引量:61
摘要
MicroRNAs (miRNAs) are crucial components of homeostatic and developmental gene regulation. In turn, dysregulation of miRNA expression is a common feature of different types of cancer, which can be harnessed therapeutically. Here we identify miR-139-5p suppression across several cytogenetically defined acute myeloid leukemia (AML) subgroups. The promoter of mir-139 was transcriptionally silenced and could be reactivated by histone deacetylase inhibitors in a dose-dependent manner. Restoration of mir-139 expression in cell lines representing the major AML subgroups (t[8;21], inv[16], mixed lineage leukemia-rearranged and complex karyotype AML) caused cell cycle arrest and apoptosis in vitro and in xenograft mouse models in vivo. During normal hematopoiesis, mir-139 is exclusively expressed in terminally differentiated neutrophils and macrophages. Ectopic expression of mir-139 repressed proliferation of normal CD34+-hematopoietic stem and progenitor cells and perturbed myelomonocytic in vitro differentiation. Mechanistically, mir-139 exerts its effects by repressing the translation initiation factor EIF4G2, thereby reducing overall protein synthesis while specifically inducing the translation of cell cycle inhibitor p27Kip1. Knockdown of EIF4G2 recapitulated the effects of mir-139, whereas restoring EIF4G2 expression rescued the mir-139 phenotype. Moreover, elevated miR-139-5p expression is associated with a favorable outcome in a cohort of 165 pediatric patients with AML. Thus, mir-139 acts as a global tumor suppressor-miR in AML by controlling protein translation. As AML cells are dependent on high protein synthesis rates controlling the expression of mir-139 constitutes a novel path for the treatment of AML.
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