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使用异核苷酸克服 GNA/RNA 碱基配对限制可提高 ESC+GalNAc-siRNAs 的药效活性。

Overcoming GNA/RNA base-pairing limitations using isonucleotides improves the pharmacodynamic activity of ESC+ GalNAc-siRNAs.

机构信息

Alnylam Pharmaceuticals, Inc., Cambridge, MA 02142, USA.

Department of Biochemistry, School of Medicine, Vanderbilt University, Nashville, TN 37232, USA.

出版信息

Nucleic Acids Res. 2021 Nov 8;49(19):10851-10867. doi: 10.1093/nar/gkab916.

Abstract

We recently reported that RNAi-mediated off-target effects are important drivers of the hepatotoxicity observed for a subset of GalNAc-siRNA conjugates in rodents, and that these findings could be mitigated by seed-pairing destabilization using a single GNA nucleotide placed within the seed region of the guide strand. Here, we report further investigation of the unique and poorly understood GNA/RNA cross-pairing behavior to better inform GNA-containing siRNA design. A reexamination of published GNA homoduplex crystal structures, along with a novel structure containing a single (S)-GNA-A residue in duplex RNA, indicated that GNA nucleotides universally adopt a rotated nucleobase orientation within all duplex contexts. Such an orientation strongly affects GNA-C and GNA-G but not GNA-A or GNA-T pairing in GNA/RNA heteroduplexes. Transposition of the hydrogen-bond donor/acceptor pairs using the novel (S)-GNA-isocytidine and -isoguanosine nucleotides could rescue productive base-pairing with the complementary G or C ribonucleotides, respectively. GalNAc-siRNAs containing these GNA isonucleotides showed an improved in vitro activity, a similar improvement in off-target profile, and maintained in vivo activity and guide strand liver levels more consistent with the parent siRNAs than those modified with isomeric GNA-C or -G, thereby expanding our toolbox for the design of siRNAs with minimized off-target activity.

摘要

我们最近报道,RNAi 介导的脱靶效应是 GalNAc-siRNA 缀合物在啮齿动物中观察到的部分肝毒性的重要驱动因素,通过在向导链的种子区域内放置单个 GNA 核苷酸,可以使这些发现得到缓解,从而使种子配对不稳定。在这里,我们报告了对独特且理解甚少的 GNA/RNA 交叉配对行为的进一步研究,以便更好地为含 GNA 的 siRNA 设计提供信息。重新检查已发表的 GNA 同源双链体晶体结构,以及包含单个 (S)-GNA-A 残基的双链 RNA 的新型结构,表明 GNA 核苷酸在所有双链体环境中普遍采用旋转的核碱基取向。这种取向强烈影响 GNA-C 和 GNA-G,但不影响 GNA/RNA 杂双链体中的 GNA-A 或 GNA-T 配对。使用新型 (S)-GNA-异胞嘧啶核苷和 -异鸟嘌呤核苷对氢键供体/受体对进行转位,可以分别分别恢复与互补 G 或 C 核糖核苷酸的有效碱基配对。含有这些 GNA 异核苷酸的 GalNAc-siRNA 显示出体外活性的提高、脱靶谱的相似改善,并且与母体 siRNA 相比,体内活性和向导链肝脏水平保持一致,与用异构 GNA-C 或 -G 修饰的 siRNA 更一致,从而扩展了我们用于设计具有最小脱靶活性的 siRNA 的工具包。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63d4/8565336/d5a9ce50773d/gkab916fig1.jpg

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