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首页> 外文期刊>Human Molecular Genetics >Failure of MBNL1-dependent post-natal splicing transitions in myotonic dystrophy.
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Failure of MBNL1-dependent post-natal splicing transitions in myotonic dystrophy.

机译:肌强直性营养不良中依赖MBNL1的出生后剪接过渡失败。

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In myotonic dystrophy (DM), expression of RNA containing expanded CUG or CCUG repeats leads to misregulated alternative splicing of pre-mRNA. The repeat-bearing transcripts accumulate in nuclear foci, together with proteins in the muscleblind family, MBNL1 and MBNL2. In transgenic mice that express expanded CUG repeats, we show that the splicing defect selectively targets a group of exons that share a common temporal pattern of developmental regulation. These exons undergo a synchronized splicing switch between post-natal day 2 and 20 in wild-type mice. During this post-natal interval, MBNL1 protein translocates from a predominantly cytoplasmic to nuclear distribution. In the absence of MBNL1, these physiological splicing transitions do not occur. The splicing defect induced by expanded CUG repeats in mature muscle fibers is closely reproduced by deficiency of MBNL1 but not by deficiency of MBNL2. A parallel situation exists in human DM type 1 and type 2. MBNL1 is depleted from the muscle nucleoplasm because of sequestration in nuclear foci, and the associated splicing defects are remarkably similar to those observed in MBNL1 knockout mice. These results indicate that MBNL1 participates in the post-natal remodeling of skeletal muscle by controlling a key set of developmentally regulated splicing switches. Sequestration of MBNL1, and failure to maintain these splicing transitions, has a pivotal role in the pathogenesis of muscle disease in DM.
机译:在强直性肌营养不良症(DM)中,包含扩展的CUG或CCUG重复序列的RNA的表达会导致前mRNA的可变剪接错误调节。带有重复序列的转录本与肌肉盲家族MBNL1和MBNL2中的蛋白质一起积累在核灶中。在表达扩展的CUG重复的转基因小鼠中,我们表明剪接缺陷选择性地靶向一组具有共同的发育调控时间模式的外显子。这些外显子在野生型小鼠的出生后第2天到第20天之间经历了同步的剪接转换。在此产后间隔期间,MBNL1蛋白从细胞质主要转移到核分布。在缺少MBNL1的情况下,不会发生这些生理剪接过渡。由成熟肌纤维中的CUG重复序列扩增引起的剪接缺陷由MBNL1缺乏而MBNL2缺乏而重现。在人类DM 1型和2型DM中,存在类似的情况。MBNL1由于核病灶中的螯合而从肌肉核质中耗尽,并且相关的剪接缺陷与在MBNL1基因敲除小鼠中观察到的缺陷非常相似。这些结果表明,MBNL1通过控制关键的发育调控剪接开关集参与骨骼肌的出生后重塑。 MBNL1的隔离,以及无法维持这些剪接过渡,在DM肌肉疾病的发病机理中具有关键作用。

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