首页> 美国卫生研究院文献>Artificial DNA PNA XNA >Enhanced splice correction by 3′ 5′-serinol and 2′-(ω-O-methylserinol) guarded OMe-RNA/DNA mixmers in cells
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Enhanced splice correction by 3′ 5′-serinol and 2′-(ω-O-methylserinol) guarded OMe-RNA/DNA mixmers in cells

机译:通过细胞中的35-丝氨醇和2-(ω-O-甲基丝氨醇)保护的OMe-RNA / DNA混合器增强剪接校正

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摘要

Development of artificial nucleic acids for therapeutic applications warrants that the oligomers be endowed with high specificity, enzymatic stability and with no/reduced off-target effects. The balance between strength of the duplex with target RNA and enzyme stability is therefore the key factor for the designed modification. The chiral serinol derivative combines the attributes of amino- and methoxy- substitution when at 2′- position and at 3′- and 5′- ends, effectively balancing the duplex stability and resistance to hydrolytic enzymes. The biological effect seen is the remarkable improvement in splice correction by the steric blocking antisense oligonucleotide with just 4 modified units, i.e ~20% substitution with R-aminomethoxypropyloxy (R-AMP)-thymidine within the 2′-OMe 18mer sequence.
机译:用于治疗应用的人工核酸的开发保证了低聚物具有高特异性,酶稳定性和无/减少的脱靶作用。因此,具有靶RNA的双链体的强度与酶稳定性之间的平衡是设计修饰的关键因素。当在2'-位以及3'-和5'-端时,手性丝氨醇衍生物结合了氨基和甲氧基取代的属性,有效地平衡了双链体的稳定性和对水解酶的抵抗力。所看到的生物学效应是通过仅具有4个修饰单元的空间封闭反义寡核苷酸(即在2'-OMe 18mer序列内被R-氨基甲氧基丙氧基(R-AMP)-胸苷取代〜20%)显着改善了剪接校正。

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