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Bifunctional Oligodeoxynucleotide/AntagomiR Constructs: Evaluation of a New Tool for MicroRNA Silencing

机译:双功能寡聚脱氧核苷酸/ AntagomiR构建体:MicroRNA沉默的新工具的评估。

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MicroRNAs (miRNAs) are fine-tuners in cellular processes, including those of the immune response. To study their functions and effects in immune cells, it is necessary to achieve specific silencing of individual miRNAs. To date, introduction of antisense microRNAs (antagomiRs) into primary cells is based on electroporation, lipofection, and viral vectors. However, these techniques often compromise viability, proliferative capacity, and differentiation. Furthermore, efficiency varies depending on the cell type and some are not suitable for in vivo approaches. To overcome these limitations we exploited the property of phosphorothioate (PTO)-modified DNA oligodeoxynucleotides (ODN) to enter cells with high efficacy: we developed and evaluated ODN/antagomiR constructs that consist of a PTO-ODN carrier covalently linked to a fully methylated antagomiR RNA sequence. Using these constructs, we achieved transfection efficiency of approximately 99% in leukocytesin particular, in B lymphocytes that are hard to transfect with other methods. Our data demonstrate that miRNA silencing by the antagomiR portion of the constructs was specific and efficient, which could be further confirmed by an increase in target protein under silencing conditions. The constructs were successfully tested in human B cells, plasmacytoid dendritic cells, monocytes, and monocyte-derived dendritic cells, thus demonstrating their versatility. Moreover, introduction of stimulatory CpG sequences into the ODN portion conveys immune stimulatory quality when intended. Thus, bifunctional ODN/antagomiR constructs represent a highly efficient, versatile, and easy-to-handle tool to manipulate cellular miRNA expression levels and to allow the subsequent investigation of specific miRNA functions.
机译:MicroRNA(miRNA)是细胞过程(包括免疫应答过程)的微调。为了研究其在免疫细胞中的功能和作用,有必要实现单个miRNA的特异性沉默。迄今为止,将反义microRNA(antagomiRs)引入原代细胞是基于电穿孔,脂转染和病毒载体。但是,这些技术通常会损害生存能力,增殖能力和分化能力。此外,效率取决于细胞类型,并且某些不适合体内方法。为了克服这些局限性,我们利用硫代磷酸酯(PTO)修饰的DNA寡脱氧核苷酸(ODN)的特性进入细胞,以高效率进入我们的细胞:我们开发并评估了由PTO-ODN载体共价连接至完全甲基化的antagomiR的ODN / antagomiR构建体RNA序列。使用这些构建体,我们在白细胞尤其是难以用其他方法转染的B淋巴细胞中实现了大约99%的转染效率。我们的数据表明,通过构建体的antagomiR部分沉默miRNA是特异性和高效的,这可以通过沉默条件下靶蛋白的增加来进一步证实。该构建体已在人B细胞,浆细胞样树突状细胞,单核细胞和单核细胞衍生的树突状细胞中成功测试,从而证明了它们的多功能性。此外,将刺激性CpG序列引入ODN部分可在预期时传达免疫刺激性。因此,双功能ODN / antagomiR构建体代表了一种高效,通用且易于操作的工具,可操纵细胞miRNA的表达水平并允许随后研究特定的miRNA功能。

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