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Identification and functional characterization of the miRNA-gene regulatory network in chronic myeloid leukemia lineage negative cells

机译:慢性粒细胞白血病谱系阴性细胞中miRNA基因调控网络的鉴定和功能表征

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Chronic myeloid leukemia (CML) is maintained by leukemic stem cells (LSCs) which are resistant to the existing TKI therapy. Hence a better understanding of the CML LSCs is necessary to eradicate these cells and achieve complete cure. Using the miRNA-gene interaction networks from the CML lin(-) cells we identified a set of up/down-regulated miRNAs and corresponding target genes. Association studies (Pearson correlation) from the miRNA and gene expression data showed that miR-1469 and miR-1972 have significantly higher number of target genes, 75 and 50 respectively. We observed that miR-1972 induces G2-M cell cycle arrest and miR-1469 moderately arrested G1 cell cycle when overexpressed in KCL22 cells. We have earlier shown that a combination of imatinib and JAK inhibitor I can significantly bring down the proliferation of CML lineage negative cells. Here we observed that imatinib and JAK inhibitor I combination restored the expression pattern of the down-regulated miRNAs in primary CML lin(-) cells. Thus effective manipulation of the deregulated miRNAs can restore the miRNA-mRNA networks that can efficiently inhibit CML stem and progenitor cells and alleviate the disease.
机译:慢性粒细胞白血病(CML)由对现有TKI治疗有抗药性的白血病干细胞(LSC)维持。因此,有必要更好地了解CML LSC,以根除这些细胞并实现完全治愈。使用来自CML lin(-)细胞的miRNA基因相互作用网络,我们鉴定了一组上调/下调的miRNA和相应的靶基因。来自miRNA和基因表达数据的关联研究(Pearson相关性)显示,miR-1469和miR-1972具有明显更高的靶基因数量,分别为75和50。我们观察到,在KCL22细胞中过表达时,miR-1972会诱导G2-M细胞周期停滞,而miR-1469会适度停滞G1细胞周期。先前我们已经表明,伊马替尼和JAK抑制剂I的组合可以显着降低CML谱系阴性细胞的增殖。在这里,我们观察到伊马替尼和JAK抑制剂I的组合恢复了原代CML lin(-)细胞中下调的miRNA的表达模式。因此,对失调的miRNA的有效操纵可以恢复miRNA-mRNA网络,该网络可以有效抑制CML干细胞和祖细胞并减轻疾病。

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