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miR-122 targeting with LNA/2′-O-methyl oligonucleotide mixmers, peptide nucleic acids (PNA), and PNA–peptide conjugates

机译:使用LNA / 2'-O-甲基寡核苷酸混合器,肽核酸(PNA)和PNA-肽共轭物靶向miR-122

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摘要

MicroRNAs are small noncoding RNAs that regulate many cellular processes in a post-transcriptional mode. MicroRNA knockdown by antisense oligonucleotides is a useful strategy to explore microRNA functionality and as potential therapeutics. MicroRNA-122 (miR-122) is a liver-specific microRNA, the main function of which has been linked with lipid metabolism and liver homeostasis. Here, we show that lipofection of an antisense oligonucleotide based on a Locked Nucleic Acids (LNA)/2′-O-methyl mixmer or electroporation of a Peptide Nucleic Acid (PNA) oligomer is effective at blocking miR-122 activity in human and rat liver cells. These oligonucleotide analogs, evaluated for the first time in microRNA inhibition, are more effective than standard 2′-O-methyl oligonucleotides in binding and inhibiting microRNA action. We also show that microRNA inhibition can be achieved without the need for transfection or electroporation of the human or rat cell lines, by conjugation of an antisense PNA to the cell-penetrating peptide R6-Penetratin, or merely by linkage to just four Lys residues, highlighting the potential of PNA for future therapeutic applications as well as for studying microRNA function.
机译:MicroRNA是小的非编码RNA,可在转录后模式下调控许多细胞过程。通过反义寡核苷酸敲低MicroRNA是探索microRNA功能性和潜在治疗方法的有用策略。 MicroRNA-122(miR-122)是肝脏特有的microRNA,其主要功能与脂质代谢和肝稳态有关。在这里,我们显示基于锁定核酸(LNA)/ 2'-O-甲基混合器的反义寡核苷酸的脂转染或肽核酸(PNA)低聚物的电穿孔可有效阻断人和大鼠的miR-122活性肝细胞。这些首次在microRNA抑制中评估的寡核苷酸类似物在结合和抑制microRNA作用方面比标准2'-O-甲基寡核苷酸更有效。我们还显示,通过将反义PNA与穿透细胞的肽R6-Penetratin结合,或仅通过与四个Lys残基连接,就可以实现microRNA抑制,而无需进行人类或大鼠细胞系的转染或电穿孔。强调了PNA在未来治疗应用以及研究microRNA功能方面的潜力。

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