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Antisense Oligonucleotides Modulating Activation of a Nonsense-Mediated RNA Decay Switch Exon in the ATM Gene

机译:反义寡核苷酸调节ATM基因中的无义介导的RNA衰变开关外显子的激活。

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摘要

ATM (ataxia-telangiectasia, mutated) is an important cancer susceptibility gene that encodes a key apical kinase in the DNA damage response pathway. ATM mutations in the germ line result in ataxia-telangiectasia (A-T), a rare genetic syndrome associated with hypersensitivity to double-strand DNA breaks and predisposition to lymphoid malignancies. ATM expression is limited by a tightly regulated nonsense-mediated RNA decay (NMD) switch exon (termed NSE) located in intron 28. In this study, we identify antisense oligonucleotides that modulate NSE inclusion in mature transcripts by systematically targeting the entire 3.1-kb-long intron. Their identification was assisted by a segmental deletion analysis of transposed elements, revealing NSE repression upon removal of a distant antisense Alu and NSE activation upon elimination of a long terminal repeat transposon MER51A. Efficient NSE repression was achieved by delivering optimized splice-switching oligonucleotides to embryonic and lymphoblastoid cells using chitosan-based nanoparticles. Together, these results provide a basis for possible sequence-specific radiosensitization of cancer cells, highlight the power of intronic antisense oligonucleotides to modify gene expression, and demonstrate transposon-mediated regulation of NSEs.
机译:ATM(共济失调毛细血管扩张症,是突变的)是一种重要的癌症易感基因,它编码DNA损伤反应途径中的关键顶端激酶。种系中的ATM突变导致共济失调毛细血管扩张(A-T),这是一种罕见的遗传综合征,与对双链DNA断裂的超敏反应和对淋巴恶性肿瘤的易感性有关。 ATM表达受到位于内含子28中的严格调控的无义介导的RNA衰变(NMD)开关外显子(称为NSE)的限制。长内含子。对它们的鉴定得到转座元件的片段缺失分析的辅助,揭示了远距离反义Alu去除后的NSE抑制和长末端重复转座子MER51A消除后的NSE激活。有效的NSE抑制是通过使用基于壳聚糖的纳米粒子将优化的剪接转换寡核苷酸递送至胚胎和淋巴母细胞来实现的。总之,这些结果为癌细胞可能的序列特异性放射增敏提供了基础,突出了内含子反义寡核苷酸修饰基因表达的能力,并证明了转座子介导的NSE调控。

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