首页> 外文期刊>Frontiers in Pharmacology >miR-150 Suppresses the Proliferation and Tumorigenicity of Leukemia Stem Cells by Targeting the Nanog Signaling Pathway
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miR-150 Suppresses the Proliferation and Tumorigenicity of Leukemia Stem Cells by Targeting the Nanog Signaling Pathway

机译:miR-150通过靶向Nanog信号通路抑制白血病干细胞的增殖和致瘤性

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Proliferation, a key feature of cancer cells, accounts for the majority of cancer-related diseases resulting in mortality. MicroRNAs (miRNAs) plays important post-transcriptional modulation roles by acting on multiple signaling pathways, but the underlying mechanism in proliferation and tumorigenicity is unclear. Here, we identified the role of miR-150 in proliferation and tumorigenicity in leukemia stem cells (LSCs; CD34+CD38- cells). miR-150 expression was significantly down-regulated in LSCs from leukemia cell lines and clinical samples. Functional assays demonstrated that increased miR-150 expression inhibited proliferation and clonal and clonogenic growth, enhanced chemosensitivity, and attenuated tumorigenic activity of LSCs in vitro . Transplantation animal studies revealed that miR-150 overexpression progressively abrogates tumor growth. Immunohistochemistry assays demonstrated that miR-150 overexpression enhanced caspase-3 level and reduced Ki-67 level. Moreover, luciferase reporter assays indicated Nanog is a direct and functional target of miR-150. Nanog silencing using small interfering RNA recapitulated anti-proliferation and tumorigenicity inhibition effects. Furthermore, miR-150 directly down-regulated the expression of other cancer stem cell factors including Notch2 and CTNNB1. These results provide insights into the specific biological behavior of miR-150 in regulating LSC proliferation and tumorigenicity. Targeting this miR-150/Nanog axis would be a helpful therapeutic strategy to treat acute myeloid leukemia.
机译:增殖是癌细胞的关键特征,占导致死亡的大多数与癌症相关的疾病的原因。 MicroRNA(miRNA)通过作用于多种信号通路而发挥重要的转录后调控作用,但其增殖和致瘤性的潜在机制尚不清楚。在这里,我们确定了miR-150在白血病干细胞(LSC; CD34 + CD38-细胞)的增殖和致瘤性中的作用。在白血病细胞系和临床样本的LSC中,miR-150的表达明显下调。功能测定表明,miR-150表达的增加在体外抑制了LSC的增殖以及克隆和克隆形成的生长,增强了化学敏感性,并减弱了它们的致瘤活性。移植动物研究表明,miR-150过表达逐渐消除了肿瘤的生长。免疫组织化学分析表明,miR-150过表达增强了caspase-3的水平,降低了Ki-67的水平。此外,荧光素酶报告基因测定表明,Nanog是miR-150的直接功能靶标。 Nanog沉默使用小干扰RNA概括了抗增殖和致瘤性抑制作用。此外,miR-150直接下调了其他癌症干细胞因子(包括Notch2和CTNNB1)的表达。这些结果为miR-150在调节LSC增殖和致瘤性方面的特定生物学行为提供了见识。靶向此miR-150 / Nanog轴将是治疗急性髓性白血病的有用治疗策略。

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