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首页> 外文期刊>Scientific reports. >Small nuclear RNA-mediated modulation of splicing reveals a therapeutic strategy for a TREM2 mutation and its post-transcriptional regulation
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Small nuclear RNA-mediated modulation of splicing reveals a therapeutic strategy for a TREM2 mutation and its post-transcriptional regulation

机译:小核RNA介导的剪接调节显示了Trem2突变及其后转录后调节的治疗策略

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Loss-of-function mutations in TREM2 cause Nasu-Hakola disease (NHD), a rare genetic disease characterized by early-onset dementia with leukoencephalopathy and bone cysts. An NHD-associated mutation, c.482?+?2?T??C, disrupts the splice donor site of intron 3 and causes aberrant skipping of exon 3, resulting in the loss of full-length TREM2 protein. Here, we examined the efficacy of artificial U1 and U7 small nuclear RNAs (snRNAs) designed to enhance exon 3 inclusion. Using mutant TREM2 minigenes, we found that some modified U1, but not U7, snRNAs enhanced exon 3 inclusion and restored TREM2 protein expression. Unexpectedly, we found that exon 3 of wild-type TREM2 is an alternative exon, whose skipping leads to reduced expression of the full-length protein. Indeed, TREM2 protein levels were modulated by modified snRNAs that either promoted or repressed exon 3 inclusion. The splice donor site flanking exon 3 was predicted to be weak, which may explain both the alternative splicing of exon 3 under normal conditions and complete exon skipping when the c.482?+?2?T??C mutation was present. Collectively, our snRNA-based approaches provide a potential therapeutic strategy for NHD-associated mis-splicing and novel insights into the post-transcriptional regulation of TREM2.
机译:Trem2中的功能性突变导致Nasu-Hakola病(NHD),一种罕见的遗传疾病,其特征在于具有白细胞病和骨囊的早期发病性痴呆。 NHD相关的突变,C.482?+?2?T?>ΔC,破坏内含子3的接头供体部位并导致外显子3的异常跳跃,导致全长Trem2蛋白质的损失。在这里,我们研究了人造U1和U7小核RNA(SNRNA)的功效,设计成增强外显子3夹杂物。使用突变体Trem2 MinigeNes,我们发现一些修饰的U1,但不是U7,SNRNA增强的外显子3夹杂物和恢复的Trem2蛋白表达。出乎意料地,我们发现野生型Trem2的外显子3是替代外显子,其跳跃导致减少全长蛋白的表达。实际上,通过改性的SnRNA调节Trem2蛋白水平,所述SNRNA可以促进或抑制外显子3夹杂物。预测剪切供体部位侧翼外显子3弱,这可以在正常条件下解释外显子3的替代剪接,并且当C.482 + + 2℃时完全跳过。存在突变。统称,我们的SNRNA的方法提供了NHD相关的错误拼接和新洞察力的潜在治疗策略,进入Trem2的转录后调节。

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