Alnylam Pharmaceuticals, 675 West Kendall Street, Cambridge, MA 02142, USA.
Department of Biochemistry, School of Medicine, Vanderbilt University, Nashville, TN 37232, USA.
Nucleic Acids Res. 2021 Mar 18;49(5):2435-2449. doi: 10.1093/nar/gkab050.
We recently reported the synthesis of 2'-fluorinated Northern-methanocarbacyclic (2'-F-NMC) nucleotides, which are based on a bicyclo[3.1.0]hexane scaffold. Here, we analyzed RNAi-mediated gene silencing activity in cell culture and demonstrated that a single incorporation of 2'-F-NMC within the guide or passenger strand of the tri-N-acetylgalactosamine-conjugated siRNA targeting mouse Ttr was generally well tolerated. Exceptions were incorporation of 2'-F-NMC into the guide strand at positions 1 and 2, which resulted in a loss of the in vitro activity. Activity at position 1 was recovered when the guide strand was modified with a 5' phosphate, suggesting that the 2'-F-NMC is a poor substrate for 5' kinases. In mice, the 2'-F-NMC-modified siRNAs had comparable RNAi potencies to the parent siRNA. 2'-F-NMC residues in the guide seed region position 7 and at positions 10, 11 and 12 were well tolerated. Surprisingly, when the 5'-phosphate mimic 5'-(E)-vinylphosphonate was attached to the 2'-F-NMC at the position 1 of the guide strand, activity was considerably reduced. The steric constraints of the bicyclic 2'-F-NMC may impair formation of hydrogen-bonding interactions between the vinylphosphonate and the MID domain of Ago2. Molecular modeling studies explain the position- and conformation-dependent RNAi-mediated gene silencing activity of 2'-F-NMC. Finally, the 5'-triphosphate of 2'-F-NMC is not a substrate for mitochondrial RNA and DNA polymerases, indicating that metabolites should not be toxic.
我们最近报道了基于双环[3.1.0]己烷骨架的 2'-氟代甲叉环(2'-F-NMC)核苷酸的合成。在这里,我们分析了细胞培养中的 RNAi 介导的基因沉默活性,并证明在三乙酰半乳糖胺缀合的靶向小鼠 Ttr 的 siRNA 的引导或过客链中单个掺入 2'-F-NMC 通常可以很好地耐受。例外的是在引导链中掺入位置 1 和 2 的 2'-F-NMC,这导致体外活性丧失。当引导链用 5' 磷酸修饰时,位置 1 的活性得到恢复,这表明 2'-F-NMC 是 5' 激酶的不良底物。在小鼠中,2'-F-NMC 修饰的 siRNA 与亲本 siRNA 具有相当的 RNAi 效力。引导种子区域位置 7 处的 2'-F-NMC 残基以及位置 10、11、11 和 12 处的 2'-F-NMC 残基均能很好地耐受。令人惊讶的是,当 5'-(E)-乙烯基膦酸酯类似物 5' 磷酸酯连接到引导链位置 1 的 2'-F-NMC 时,活性显著降低。双环 2'-F-NMC 的空间位阻可能会阻碍乙烯基磷酸酯与 Ago2 的 MID 结构域之间氢键的形成。分子建模研究解释了 2'-F-NMC 位置和构象依赖性的 RNAi 介导的基因沉默活性。最后,2'-F-NMC 的 5' 三磷酸酯不是线粒体 RNA 和 DNA 聚合酶的底物,表明代谢物不应有毒。