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Muscle weakness in myotonic dystrophy associated with misregulated splicing and altered gating of CaV1.1 calcium channel

机译:强直性肌营养不良症的肌肉无力与错调的剪接和改变CaV1.1钙通道的门控有关

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摘要

Myotonic dystrophy type 1 and type 2 (DM1 and DM2) are genetic diseases in which mutant transcripts containing expanded CUG or CCUG repeats cause cellular dysfunction by altering the processing or metabolism of specific mRNAs and miRNAs. The toxic effects of mutant RNA are mediated partly through effects on proteins that regulate alternative splicing. Here we show that alternative splicing of exon 29 (E29) of CaV1.1, a calcium channel that controls skeletal muscle excitation–contraction coupling, is markedly repressed in DM1 and DM2. The extent of E29 skipping correlated with severity of weakness in tibialis anterior muscle of DM1 patients. Two splicing factors previously implicated in DM1, MBNL1 and CUGBP1, participated in the regulation of E29 splicing. In muscle fibers of wild-type mice, the CaV1.1 channel conductance and voltage sensitivity were increased by splice-shifting oligonucleotides that induce E29 skipping. In contrast to human DM1, expression of CUG-expanded RNA caused only a modest increase in E29 skipping in mice. However, forced skipping of E29 in these mice, to levels approaching those observed in human DM1, aggravated the muscle pathology as evidenced by increased central nucleation. Together, these results indicate that DM-associated splicing defects alter CaV1.1 function, with potential for exacerbation of myopathy.
机译:1型和2型强直性肌营养不良症(DM1和DM2)是遗传性疾病,其中含有扩展的CUG或CCUG重复序列的突变转录本通过改变特定mRNA和miRNA的加工或代谢而导致细胞功能障碍。突变RNA的毒性作用部分是通过对调节选择性剪接的蛋白质的影响介导的。在这里,我们显示DM1和DM2中显着抑制了CaV1.1外显子29(E29)的选择性剪接,CaV1.1是控制骨骼肌兴奋与收缩耦合的钙通道。 E29跳跃的程度与DM1患者胫前肌无力的严重程度相关。先前与DM1有关的两个剪接因子MBNL1和CUGBP1参与了E29剪接的调控。在野生型小鼠的肌纤维中,CaV1.1通道电导和电压敏感性通过诱导E29跳跃的剪接移位寡核苷酸而增加。与人DM1相反,CUG扩增的RNA的表达仅引起小鼠E29跳跃的适度增加。但是,强迫这些小鼠中的E29跳跃到接近人类DM1中观察到的水平,会加剧肌肉病理,这是由中央核形成增加所证明的。总之,这些结果表明DM相关的剪接缺陷会改变CaV1.1功能,并可能加剧肌病。

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