Insight into the mechanism of AML del(9q) progression: hnRNP K targets the myeloid master regulators CEBPA (C/EBPα) and SPI1 (PU.1)

CEBPA公司 髓样 髓系白血病 生物 转录因子 癌症研究 骨髓生成 运行x1 分子生物学 细胞生物学 造血 干细胞 遗传学 基因
作者
Kerstin Rahn,Ali T. Abdallah,Lin Gan,Shelley M. Herbrich,Roland Sonntag,Oscar Benitez,Prerna Malaney,Xiaorui Zhang,Adriana Rodríguez,Jared Brottem,Gernot Marx,Tim H. Brümmendorf,Dirk H. Ostareck,Antje Ostareck-Lederer,Martina Crysandt,Sean M. Post,Isabel S. Naarmann-de Vries
出处
期刊:Biochimica et biophysica acta [Elsevier]
卷期号:1867 (1): 195004-195004 被引量:2
标识
DOI:10.1016/j.bbagrm.2023.195004
摘要

Deletions on the long arm of chromosome 9 (del(9q)) are recurrent abnormalities in about 2 % of acute myeloid leukemia cases, which usually involve HNRNPK and are frequently associated with other known aberrations. Based on an Hnrnpk haploinsufficient mouse model, a recent study demonstrated a function of hnRNP K in pathogenesis of myeloid malignancies via the regulation of cellular proliferation and myeloid differentiation programs. Here, we provide evidence that reduced hnRNP K expression results in the dysregulated expression of C/EBPα and additional transcription factors. CyTOF analysis revealed monocytic skewing with increased levels of mature myeloid cells. To explore the role of hnRNP K during normal and pathological myeloid differentiation in humans, we characterized hnRNP K-interacting RNAs in human AML cell lines. Notably, RNA-sequencing revealed several mRNAs encoding key transcription factors involved in the regulation of myeloid differentiation as targets of hnRNP K. We showed that specific sequence motifs confer the interaction of SPI1 and CEBPA 5′ and 3′UTRs with hnRNP K. The siRNA mediated reduction of hnRNP K in human AML cells resulted in an increase of PU.1 and C/EBPα that is most pronounced for the p30 isoform. The combinatorial treatment with the inducer of myeloid differentiation valproic acid resulted in increased C/EBPα expression and myeloid differentiation. Together, our results indicate that hnRNP K post-transcriptionally regulates the expression of myeloid master transcription factors. These novel findings can inaugurate novel options for targeted treatment of AML del(9q) by modulation of hnRNP K function.
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