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Phagocytes Granulocytes and Myelopoiesis: MicroRNA profiling identifies miR-34a and miR-21 and their target genes JAG1 and WNT1 in the coordinate regulation of dendritic cell differentiation

机译:吞噬细胞粒细胞和骨髓生成:MicroRNA谱分析可鉴定miR-34a和miR-21及其靶基因JAG1和WNT1在树突状细胞分化的协调调控中

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摘要

MicroRNAs (miRNAs, miRs) modulate a multitude of cellular events. Here, we identify functional miRNA-protein networks that regulate human monocyte-derived dendritic cell (MDDC) differentiation. miRNA profiling revealed stage-specific differential expression of 20 miRNAs during days 1, 3, and 5 of MDDC differentiation. To identify and prioritize miRNA-protein networks for functional validation, we developed a target ranking algorithm that incorporates many features of miRNA regulatory networks. This system prioritized miR-21, miR-34a, and their cognate targets WNT1 and JAG1 for functional validation. Inhibition of both miR-21 and miR-34a stalled MDDC differentiation, as quantified by DC-SIGN/CD14 expression ratios, showing cooperative involvement of these miRNAs in MDDC differentiation. We confirmed that the 3′ untranslated regions of WNT1 and JAG1 were functional targets of these miRNAs and provide evidence that these targets were translationally suppressed. Significantly, exogenously added Wnt-1 and Jagged-1 also stalled MDDC differentiation, suggesting that miRNA-mediated inhibition of endogenous WNT1 and JAG1 expression was important for proper MDDC differentiation. Finally, inhibition of miR-21 and miR-34a, or addition of Wnt-1 and Jagged-1, led to a decrease in endocytic capacity, a key function of immature DCs. Thus, our novel approach identified and validated some miRNA-protein networks involved in phenotypic and functional MDDC differentiation.
机译:MicroRNA(miRNA,miR)调节多种细胞事件。在这里,我们确定了调节人类单核细胞衍生的树突状细胞(MDDC)分化的功能性miRNA-蛋白质网络。 miRNA分析显示在MDDC分化的​​第1、3和5天中有20种miRNA的阶段特异性差异表达。为了确定miRNA蛋白质网络并对其进行优先级排序以进行功能验证,我们开发了一种目标排序算法,该算法结合了miRNA调控网络的许多功能。该系统对miR-21,miR-34a及其关联目标WNT1和JAG1进行了优先排序,以进行功能验证。如通过DC-SIGN / CD14表达比率所量化的,miR-21和miR-34a的抑制均使MDDC分化停滞,表明这些miRNA协同参与了MDDC分化。我们证实,WNT1和JAG1的3'非翻译区是这些miRNA的功能靶标,并提供证据证明这些靶标被翻译抑制。重要的是,外源添加的Wnt-1和Jagged-1也使MDDC分化停滞,这表明miRNA介导的内源性WNT1和JAG1表达的抑制对于适当的MDDC分化很重要。最后,抑制miR-21和miR-34a或添加Wnt-1和Jagged-1会导致内吞能力降低,这是不成熟DC的关键功能。因此,我们的新方法鉴定并验证了一些涉及表型和功能性MDDC分化的​​miRNA-蛋白质网络。

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