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Design principles for bifunctional targeted oligonucleotide enhancers of splicing

机译:双功能靶向寡核苷酸剪接增强子的设计原理

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Controlling the patterns of splicing of specific genes is an important goal in the development of new therapies. We have shown that the splicing of a refractory exon, SMN2 exon 7, could be increased in fibroblasts derived from patients with spinal muscular atrophy by using bifunctional targeted oligonucleotide enhancers of splicing (TOES) oligonucleotides that anneal to the exon and contain a 'tail' of enhancer sequences that recruit activating proteins. We show here that there are striking agreements between the effects of oligonucleotides on splicing in vitro and on both splicing and SMN2 protein expression in patient-derived fibroblasts, indicating that the effects on splicing are the major determinant of success. Increased exon inclusion depends on the number, sequence and chemistry of the motifs that bind the activator protein SRSF1, but it is not improved by increasing the strength of annealing to the target site. The optimal oligonucleotide increases protein levels in transfected fibroblasts by a mean value of 2.6-fold (maximum 4.6-fold), and after two rounds of transfection the effect lasted for a month. Oligonucleotides targeted to the upstream exon (exon 6 in SMN) are also effective. We conclude that TOES oligonucleotides are highly effective reagents for restoring the splicing of refractory exons and can act across long introns.
机译:控制特定基因的剪接模式是开发新疗法的重要目标。我们已经显示,通过使用与外显子退火并包含“尾巴”的双功能靶向寡核苷酸增强子(TOES)寡核苷酸,可以在源自脊髓性肌萎缩症患者的成纤维细胞中增加难治性外显子SMN2外显子7的剪接募集活化蛋白的增强子序列。我们在这里显示,在寡核苷酸对体外剪接的影响以及对患者来源的成纤维细胞中剪接和SMN2蛋白表达的影响之间存在惊人的协议,表明对剪接的影响是成功的主要决定因素。外显子包涵体的增加取决于结合激活蛋白SRSF1的基序的数量,序列和化学性质,但不能通过增加退火至目标位点的强度来改善。最佳寡核苷酸可将转染的成纤维细胞中的蛋白质水平平均提高2.6倍(最大4.6倍),并且在两轮转染后效果持续了一个月。靶向上游外显子(SMN中的外显子6)的寡核苷酸也是有效的。我们得出结论,TOES寡核苷酸是恢复难治外显子剪接的高效试剂,可跨长内含子起作用。

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