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首页> 外文期刊>RNA biology >Small molecule kinase inhibitors alleviate different molecular features of myotonic dystrophy type 1
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Small molecule kinase inhibitors alleviate different molecular features of myotonic dystrophy type 1

机译:小分子激酶抑制剂缓解1型强直性肌营养不良的不同分子特征

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摘要

Expandable (CTG)n repeats in the 3' UTR of the DMPK gene are a cause of myotonic dystrophy type 1 (DM1), which leads to a toxic RNA gain-of-function disease. Mutant RNAs with expanded CUG repeats are retained in the nucleus and aggregate in discrete inclusions. These foci sequester splicing factors of the MBNL family and trigger upregulation of the CUGBP family of proteins resulting in the mis-splicing of their target transcripts. To date, many efforts to develop novel therapeutic strategies have been focused on disrupting the toxic nuclear foci and correcting aberrant alternative splicing via targeting mutant CUG repeats RNA; however, no effective treatment for DM1 is currently available. Herein, we present results of culturing of human DM1 myoblasts and fibroblasts with two small-molecule ATP-binding site-specific kinase inhibitors, C16 and C51, which resulted in the alleviation of the dominant-negative effects of CUG repeat expansion. Reversal of the DM1 molecular phenotype includes a reduction of the size and number of foci containing expanded CUG repeat transcripts, decreased steady-state levels of CUGBP1 protein, and consequent improvement of the aberrant alternative splicing of several pre-mRNAs misregulated in DM1.
机译:DMPK基因3'UTR中的可扩展(CTG)n重复是导致1型肌强直性营养不良(DM1)的原因,它导致了毒性RNA功能获得性疾病。具有扩展的CUG重复序列的突变RNA保留在细胞核中,并聚集在离散的包裹体中。 MBNL家族的这些病原体螯合剪接因子,并触发了CUGBP家族蛋白的上调,导致其靶转录本的错接。迄今为止,开发新颖治疗策略的许多努力都集中在破坏有毒核灶和通过靶向突变CUG重复RNA纠正异常的选择性剪接上。但是,目前尚无针对DM1的有效治疗方法。在这里,我们提出了人类DM1成肌细胞和成纤维细胞与两种小分子ATP结合位点特异性激酶抑制剂C16和C51的培养结果,从而减轻了CUG重复扩增的显性负效应。 DM1分子表型的逆转包括减少含有扩展的CUG重复转录本的病灶的大小和数量,降低CUGBP1蛋白的稳态水平,并因此改善在DM1中被错误调节的几种前mRNA的异常可变剪接。

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