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首页> 外文期刊>Nucleic Acids Research >Chimeric siRNAs with chemically modified pentofuranose and hexopyranose nucleotides: altritol-nucleotide (ANA) containing GalNAc-siRNA conjugates: in vitro and in vivo RNAi activity and resistance to 5 '-exonuclease
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Chimeric siRNAs with chemically modified pentofuranose and hexopyranose nucleotides: altritol-nucleotide (ANA) containing GalNAc-siRNA conjugates: in vitro and in vivo RNAi activity and resistance to 5 '-exonuclease

机译:嵌合siRNA与化学改性的戊呋喃糖和己糖苷核苷酸:含有GalNac-siRNA缀合物的丙醇 - 核苷酸(ANA):体外和体内RNAi活性和抗性至5' - 尿组酶

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摘要

In this report, we investigated the hexopyranose chemical modification Altriol Nucleic Acid (ANA) within small interfering RNA (siRNA) duplexes that were otherwise fully modified with the 2'-deoxy-2'-fluoro and 2'-O-methyl pentofuranose chemical modifications. The siRNAs were designed to silence the transthyretin (Ttr) gene and were conjugated to a trivalent N-acetylgalactosamine (GalNAc) ligand for targeted delivery to hepatocytes. Sense and antisense strands of the parent duplex were synthesized with single ANA residues at each position on the strand, and the resulting siRNAs were evaluated for their ability to inhibit Ttr mRNA expression in vitro. Although ANA residues were detrimental at the 5' end of the antisense strand, the siRNAs with ANA at position 6 or 7 in the seed region had activity comparable to the parent. The siRNA with ANA at position 7 in the seed region was active in a mouse model. An Oligonucleotide with ANA at the 5' end was more stable in the presence of 5'-exonuclease than an oligonucleotide of the same sequence and chemical composition without the ANA modification. Modeling studies provide insight into the origins of regiospecific changes in potency of siRNAs and the increased protection against 5'-exonuclease degradation afforded by the ANA modification.
机译:在本报告中,我们内的小干扰RNA(siRNA),其在其它方面完全与2'-脱氧-2'-氟和2'-O-甲基pentofuranose化学修饰的双链体改性研究了六吡喃糖化学修饰Altriol核酸(ANA) 。所述的siRNA设计用于沉默的转甲状腺素蛋白(TTR)基因和缀合到三价N-乙酰乳糖胺(GalNAc)的配体的靶向递送到肝细胞。父双链体的有义和反义链物在所述链的每个位置与单ANA残基合成,并且将所得的siRNA评价它们在体外抑制TTR mRNA表达的能力。虽然ANA残基为在反义链的5' 端有害的,在种子区域位置6或7的ANA的siRNA具有活性比得上母体。在种子区域位置7 ANA所述siRNA在小鼠模型中是活性的。与ANA的寡核苷酸在5' 端是5'核酸外切酶的存在下比相同的序列和化学组成的未经修改ANA的寡核苷酸更加稳定。模拟研究提供深入的siRNA的效力和区域特异性的变化对5'核酸外切酶降解增加的保护由全日空修改提供的起源。

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  • 来源
    《Nucleic Acids Research》 |2020年第8期|共13页
  • 作者单位

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Katholieke Univ Leuven Rega Inst Med Res Med Chem Herestr 49 B-3000 Leuven Belgium;

    Katholieke Univ Leuven Rega Inst Med Res Med Chem Herestr 49 B-3000 Leuven Belgium;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Vanderbilt Univ Sch Med Dept Biochem Nashville TN 37232 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

    Katholieke Univ Leuven Rega Inst Med Res Med Chem Herestr 49 B-3000 Leuven Belgium;

    Vanderbilt Univ Sch Med Dept Biochem Nashville TN 37232 USA;

    Alnylam Pharmaceut 300 Third St Cambridge MA 02142 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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