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Design and evaluation of locked nucleic acid-based splice-switching oligonucleotides in vitro

机译:基于锁定核酸的剪接转换寡核苷酸的体外设计和评估

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摘要

Antisense-mediated modulation of pre-mRNA splicing is an attractive therapeutic strategy for genetic diseases. Currently, there are few examples of modulation of pre-mRNA splicing using locked nucleic acid (LNA) antisense oligonucleotides, and, in particular, no systematic study has addressed the optimal design of LNA-based splice-switching oligonucleotides (LNA SSOs). Here, we designed a series of LNA SSOs complementary to the human dystrophin exon 58 sequence and evaluated their ability to induce exon skipping in vitro using reverse transcription-polymerase chain reaction. We demonstrated that the number of LNAs in the SSO sequence and the melting temperature of the SSOs play important roles in inducing exon skipping and seem to be key factors for designing efficient LNA SSOs. LNA SSO length was an important determinant of activity: a 13-mer with six LNA modifications had the highest efficacy, and a 7-mer was the minimal length required to induce exon skipping. Evaluation of exon skipping activity using mismatched LNA/DNA mixmers revealed that 9-mer LNA SSO allowed a better mismatch discrimination. LNA SSOs also induced exon skipping of endogenous human dystrophin in primary human skeletal muscle cells. Taken together, our findings indicate that LNA SSOs are powerful tools for modulating pre-mRNA splicing.
机译:反义介导的前mRNA剪接调控是遗传疾病的一种有吸引力的治疗策略。当前,很少有使用锁定核酸(LNA)反义寡核苷酸调节前mRNA剪接的例子,特别是,没有系统的研究解决基于LNA的剪接转换寡核苷酸(LNA SSO)的最佳设计。在这里,我们设计了一系列与人肌营养不良蛋白外显子58序列互补的LNA SSO,并使用逆转录聚合酶链反应评估了它们在体外诱导外显子跳跃的能力。我们证明,SSO序列中LNA的数量和SSO的解链温度在诱导外显子跳跃中起重要作用,并且似乎是设计有效LNA SSO的关键因素。 LNA SSO长度是活性的重要决定因素:具有6个LNA修饰的13-mer具有最高的功效,而7-mer是诱导外显子跳跃所需的最小长度。使用错配的LNA / DNA混合器评估外显子跳跃活性显示9-mer LNA SSO可以更好地区分错配。 LNA SSOs还诱导原代人骨骼肌细胞中内源性人肌营养不良蛋白的外显子跳跃。综上所述,我们的发现表明LNA SSO是调节前mRNA剪接的强大工具。

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