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Chirality Dependent Potency Enhancement and Structural Impact of Glycol Nucleic Acid Modification on siRNA

机译:手性依赖的能力增强和乙二醇核酸修饰对siRNA的结构影响

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摘要

Here we report the investigation of glycol nucleic acid (GNA), an acyclic nucleic acid analogue, as a modification of siRNA duplexes. We evaluated the impact of (S)- or (R)-GNA nucleotide incorporation on RNA duplex structure by determining three individual crystal structures. These structures indicate that the (S)-nudeotide backbone adopts a conformation that has little impact on the overall duplex structure, while the (R)-nucleotide disrupts the phosphate backbone and hydrogen bonding of an adjacent base pair. In addition, the GNA-T nucleobase adopts a rotated conformation in which the 5-methyl group points into the minor groove, rather than the major groove as in a normal Watson—Crick base pair. This observation of reverse Watson—Crick base pairing is further supported by thermal melting analysis of GNA-C and GNA-G containing duplexes where it was demonstrated that a higher thermal stability was associated with isoguanine and isocytosine base pairing, respectively, over the canonical nucleobases. Furthermore, it was also shown that GNA nucleotide or dinucleotide incorporation increases resistance against snake venom phosphodiesterase. Consistent with the structural data, modification of an siRNA with (S)-GNA resulted in greater in vitro potencies over identical sequences containing (R)-GNA A walk of (S)-GNA along the guide and passenger strands of a GalNAc conjugate duplex targeting mouse transthyretin (TTR) indicated that GNA is well tolerated in the seed region of both strands in vitro, resulting in an approximate 2-fold improvement in potency. Finally, these conjugate duplexes modified with GNA were capable of maintaining in vivo potency when subcutaneously injected into mice.
机译:在这里,我们报告对无环核酸类似物乙二醇核酸(GNA)的研究,作为siRNA双链体的修饰。我们通过确定三个单独的晶体结构,评估了(S)-或(R)-GNA核苷酸掺入对RNA双链体结构的影响。这些结构表明(S)-核苷酸主链采用的构象对整体双链体结构影响很小,而(R)-核苷酸破坏了磷酸盐主链和相邻碱基对的氢键。此外,GNA-T核碱基采用旋转构型,其中5-甲基指向小沟,而不是正常的Watson-Crick碱基对中的大沟。通过对GNA-C和含GNA-G的双链体进行热熔分析,进一步证实了反向Watson-Crick碱基配对的现象,其中表明,与典型的核碱基相比,异鸟嘌呤和异胞嘧啶碱基配对分别具有更高的热稳定性。 。此外,还显示出GNA核苷酸或二核苷酸的掺入增加了对蛇毒磷酸二酯酶的抗性。与结构数据一致,用(S)-GNA修饰siRNA可以产生比包含(R)-GNA的相同序列更高的体外效价(S)-GNA沿着GalNAc共轭双链体的引导链和过客链行走靶向小鼠运甲状腺素蛋白(TTR)的结果表明,在体外,两条链的种子区域对GNA的耐受性都很好,导致效力提高了约2倍。最后,这些经GNA修饰的共轭双链体在皮下注射到小鼠体内后能够维持体内效力。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第25期|8537-8546|共10页
  • 作者单位

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Vanderbilt University School of Medicine, Department of Biochemistry, Nashville, Tennessee 37232, United States;

    Vanderbilt University School of Medicine, Department of Biochemistry, Nashville, Tennessee 37232, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

    Vanderbilt University School of Medicine, Department of Biochemistry, Nashville, Tennessee 37232, United States;

    Alnylam Pharmaceuticals, 300 Third Street, Cambridge, Massachusetts 02142, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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