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MicroRNA-143 targets ERK5 in granulopoiesis and predicts outcome of patients with acute myeloid leukemia

机译:microRNA-143靶向ERK5在肉芽泡中,并预测急性髓细胞白血病患者的结果

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Hematopoiesis, the formation of blood cells from hematopoietic stem cells (HSC), is a highly regulated process. Since the discovery of microRNAs (miRNAs), several studies have shown their significant role in the regulation of the hematopoietic system. Impaired expression of miRNAs leads to disrupted cellular pathways and in particular causes loss of hematopoietic ability. Here, we report a previously unrecognized function of miR-143 in granulopoiesis. Hematopoietic cells undergoing granulocytic differentiation exhibited increased miR-143 expression. Overexpression or ablation of miR-143 expression resulted in accelerated granulocytic differentiation or block of differentiation, respectively. The absence of miR-143 in mice resulted in a reduced number of mature granulocytes in blood and bone marrow. Additionally, we observed an association of high miR-143 expression levels with a higher probability of survival in two different cohorts of patients with acute myeloid leukemia (AML). Overexpression of miR-143 in AML cells impaired cell growth, partially induced differentiation, and caused apoptosis. Argonaute2-RNA-Immunoprecipitation assay revealed ERK5, a member of the MAPK-family, as a target of miR-143 in myeloid cells. Further, we observed an inverse correlation of miR-143 and ERK5 in primary AML patient samples, and in CD34+ HSPCs undergoing granulocytic differentiation and we confirmed functional relevance of ERK5 in myeloid cells. In conclusion, our data describe miR-143 as a relevant factor in granulocyte differentiation, whose expression may be useful as a prognostic and therapeutic factor in AML therapy.
机译:血小霉素,来自造血干细胞(HSC)的血细胞的形成是一种高度调节的方法。自微小RNA(miRNA)发现以来,几项研究表明了在造血系统的调节中具有重要作用。 miRNA的表达受损导致细胞途径破坏,特别是导致造血能力的丧失。在这里,我们在肉芽瓶中报告了MiR-143的先前未被识别的功能。经历粒细胞分化的造血细胞表现出MiR-143表达增加。发育尺寸或消融miR-143表达产生加速粒细胞分化或分化块。小鼠中没有miR-143导致血液和骨髓中的成熟粒细胞减少。此外,我们观察到高miR-143表达水平的关联,其两种不同的急性髓性白血病患者的生存概率更高,急性髓性白血病(AML)。 MIR-143在AML细胞中的过表达患有细胞生长,部分诱导的分化和引起的细胞凋亡。 Argonaute2-RNA免疫沉淀测定显示ERK5,MAPK家族的成员,作为髓细胞miR-143的靶标。此外,我们观察到MiR-143和ERK5在初级AML患者样品中的反向相关性,并且在经历粒细胞分化的CD34 + HSPC中,我们确认了ERK5在骨髓细胞中的功能相关性。总之,我们的数据描述了MIR-143作为粒细胞分化中的相关因子,其表达可用作AML疗法中的预后和治疗因素。

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