Lingdi Zhang, Xue-Hai Liang, Cheryl Li De Hoyos, Michael Migawa, Joshua G Nichols, Graeme Freestone, Jun Tian, Punit P Seth, Stanley T Crooke
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引用次数: 10
摘要
反义寡核苷酸(ASOs)通过RNA酶H1介导RNA靶标降解,被用作治疗各种疾病的药物。在此之前,我们发现在缺口分子硫代酸(PS) ASO的中心脱氧核苷酸区2位引入单个2'- o -甲基(2'-OMe)修饰,其中末端的几个残基是2'-甲氧基乙基,2'约束乙基或锁定核酸,可以显著降低细胞毒性,而对效力只有适度的影响。最近,我们证明了用甲酰-氨基磷(MsPA)连锁取代间隙中位置2或3的PS连锁也显著降低了毒性,而没有明显的效力损失,并增加了ASOs的消除半衰期。在这项研究中,我们评估了MsPA键和2'-OMe核苷酸组合对PS ASO性能的影响。我们发现,在间隙5'端或gap 2'-OMe PS ASO的3'端进行两个MsPA修饰,可以显著提高间隙2位置有OMe的ASO的活性,而不会改变安全性。在细胞和动物的多个序列中观察到这种效果。因此,MsPA修饰提高了缺口中有2'-OMe的PS aso的RNase H1切割率,显著减少了参与细胞毒性的蛋白质结合,延长了消除半衰期。
The Combination of Mesyl-Phosphoramidate Inter-Nucleotide Linkages and 2'-O-Methyl in Selected Positions in the Antisense Oligonucleotide Enhances the Performance of RNaseH1 Active PS-ASOs.
Antisense oligonucleotides (ASOs) that mediate RNA target degradation by RNase H1 are used as drugs to treat various diseases. Previously we found that introduction of a single 2'-O-methyl (2'-OMe) modification in position 2 of the central deoxynucleotide region of a gapmer phosphorothioate (PS) ASO, in which several residues at the termini are 2'-methoxyethyl, 2' constrained ethyl, or locked nucleic acid, dramatically reduced cytotoxicity with only modest effects on potency. More recently, we demonstrated that replacement of the PS linkage at position 2 or 3 in the gap with a mesyl-phosphoramidate (MsPA) linkage also significantly reduced toxicity without meaningful loss of potency and increased the elimination half-life of the ASOs. In this study, we evaluated the effects of the combination of MsPA linkages and 2'-OMe nucleotides on PS ASO performance. We found that two MsPA modifications at the 5' end of the gap or in the 3'-wing of a Gap 2'-OMe PS ASO substantially increased the activity of ASOs with OMe at position 2 of the gap without altering the safety profile. Such effects were observed with multiple sequences in cells and animals. Thus, the MsPA modification improves the RNase H1 cleavage rate of PS ASOs with a 2'-OMe in the gap, significantly reduces binding of proteins involved in cytotoxicity, and prolongs elimination half-lives.
期刊介绍:
Nucleic Acid Therapeutics is the leading journal in its field focusing on cutting-edge basic research, therapeutic applications, and drug development using nucleic acids or related compounds to alter gene expression. The Journal examines many new approaches for using nucleic acids as therapeutic agents or in modifying nucleic acids for therapeutic purposes including: oligonucleotides, gene modification, aptamers, RNA nanoparticles, and ribozymes.