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DDX3X promotes the biogenesis of a subset of miRNAs and the potential roles they played in cancer development

机译:DDX3X促进MIRNA的子集的生物发生以及它们在癌症发展中发挥的潜在作用

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DDX3X, located on the X-chromosome, belongs to the DEAD-box RNA helicase family and acts as a key RNA-binding protein to exert its regulatory functions in various biological processes. In this paper, knock-down the expression of DDX3X can affect a subset of miRNA expression levels, especially for miR-1, miR-141, miR-145, miR-19b, miR-20a and miR-34a. Through adopting the immunoprecipitation (IP), RNA immunoprecipitation (RIP), dual luciferase reporter assays, we illustrate that DDX3X could interact with Drosha/DGCR8 complex, elevate the processing activity of Drosha/DGCR8 complex on pri-miRNAs, and increase mature miRNA expression levels. For the studies of potential roles and biological functions of DDX3X-dependent miRNAs and their downstream target genes in multiple cancers, we use the primary data from The Cancer Genome Atlas (TCGA), Ingenuity Pathway Analysis (IPA) and several miRNA target prediction databases, to systematically analyze the expression levels of DDX3X-dependent miRNAs in almost 14 kinds of cancers versus normal tissues, and the essential biological functions for their putative downstream target genes. All these findings will provide us novel insights and directions for thoroughly exploring the regulatory mechanisms of miRNA biogenesis, and shed light on effectively searching the clinical significances and biological roles of DDX3X-dependent miRNAs and their target genes in cancer development.
机译:位于X-染色体上的DDX3X属于死箱RNA螺旋酶系列,并作为关键RNA结合蛋白,以在各种生物过程中发挥其调节功能。在本文中,击倒DDX3x的表达可以影响miRNA表达水平的子集,尤其是miR-1,miR-141,miR-145,miR-19b,miR-20a和miR-34a。通过采用免疫沉淀(IP),RNA免疫沉淀(RIP),双荧光素酶报告器测定,我们说明DDX3X可以与DROSHA / DGCR8复合物相互作用,提高PRI-MIRNA上的DROSHA / DGCR8复合物的加工活性,并增加成熟的miRNA表达水平。对于DDX3x依赖性miRNA的潜在作用和生物学功能及其在多种癌症中的下游靶基因的研究,我们使用来自癌症基因组Atlas(TCGA)的主要数据,巧妙的途径分析(IPA)和几个miRNA靶预测数据库,为了系统地分析近14种癌症与正常组织中DDX3X依赖性miRNA的表达水平,以及其推定下游靶基因的基本生物学功能。所有这些调查结果将为我们提供新的见解和方向,以彻底探索miRNA生物生成的调节机制,并有效地搜索DDX3X依赖性miRNA的临床意义和生物学作用及其在癌症发育中的靶基因的临床意义和生物学作用。

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