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Targeting a pre-mRNA structure with bipartite antisense molecules modulates tau alternative splicing

机译:用二分反义分子靶向前mRNA结构可调节tau选择性剪接

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摘要

Approximately 15% of human genetic diseases are estimated to involve dysregulation of alternative pre-mRNA splicing. Antisense molecules designed to alter these and other splicing events typically target continuous linear sequences of the message. Here, we show that a structural feature in a pre-mRNA can be targeted by bipartite antisense molecules designed to hybridize with the discontinuous elements that flank the structure and thereby alter splicing. We targeted a hairpin structure at the boundary between exon 10 and intron 10 of the pre-mRNA of tau. Mutations in this region that are associated with certain forms of frontotemporal dementia, destabilize the hairpin to cause increased inclusion of exon 10. Via electrophoretic mobility shift and RNase protection assays, we demonstrate that bipartite antisense molecules designed to simultaneously interact with the available sequences that immediately flank the tau pre-mRNA hairpin do indeed bind to this structured region. Moreover, these agents inhibit exon 10 splicing and reverse the effect of destabilizing disease-causing mutations, in both in vitro splicing assays and cell culture. This general bipartite antisense strategy could be employed to modulate other splicing events that are regulated by RNA secondary structure.
机译:据估计,大约15%的人类遗传疾病涉及替代性的前mRNA剪接异常。设计用来改变这些和其他剪接事件的反义分子通常靶向消息的连续线性序列。在这里,我们表明前mRNA中的结构特征可以被设计成与位于结构侧面的不连续元件杂交从而改变剪接的二分反义分子靶向。我们将发夹结构靶向tau的前mRNA的外显子10和内含子10之间的边界。该区域的突变与某些额颞叶痴呆有关,使发夹不稳定,导致外显子10的包涵性增加。通过电泳迁移率迁移和RNase保护试验,我们证明了二分反义分子旨在与可用序列同时相互作用,从而立即tau pre-mRNA发夹的侧面确实确实结合了该结构化区域。此外,在体外剪接测定和细胞培养中,这些试剂均抑制外显子10剪接并逆转导致疾病不稳定的稳定突变的作用。这种一般的二分反义策略可以用于调节受RNA二级结构调节的其他剪接事件。

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