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Ribonuclear foci at the neuromuscular junction in myotonic dystrophy type 1.

机译:1型强直性肌营养不良症的神经肌肉接头处的核核病灶。

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摘要

In myotonic dystrophy type 1 (DM1) the muscle fibers express RNA containing an expanded CUG repeat (CUG(exp)). The CUG(exp) RNA is retained in the nucleus, forming ribonuclear foci. Splicing factors in the muscleblind (MBNL) family are sequestered in ribonuclear foci, resulting in abnormal regulation of alternative splicing. In extrajunctional nuclei, these effects on splicing regulation lead to reduced chloride conductance and altered insulin receptor signaling. Here we show that CUG(exp) RNA is also expressed in subsynaptic nuclei of muscle fibers and in motor neurons in DM1, causing sequestration of MBNL1 protein in both locations. In a transgenic mouse model, expression of CUG(exp) RNA at high levels in extrajunctional nuclei replicates many features of DM1, but the toxic RNA is poorly expressed in subsynaptic nuclei and the mice fail to develop denervation-like features of DM1 myopathology. Our findings indicate that subsynaptic nuclei and motor neurons are at risk for DM1-induced spliceopathy, which may affect function or stability of the neuromuscular junction.
机译:在1型强直性肌营养不良症(DM1)中,肌肉纤维表达的RNA包含一个扩展的CUG重复序列(CUG(exp))。 CUG(exp)RNA保留在核中,形成核仁灶。肌肉盲(MBNL)家族中的剪接因子被隔离在核仁灶中,导致替代剪接的异常调控。在结外核中,这些对剪接调控的作用导致氯离子传导减少和胰岛素受体信号传导改变。在这里,我们显示CUG(exp)RNA也表达在肌肉纤维的突触核中和DM1中的运动神经元中,导致MBNL1蛋白在两个位置被隔离。在转基因小鼠模型中,在结外核中高水平表达的CUG(exp)RNA复制了DM1的许多特征,但是有毒RNA在突触下核中的表达却很差,并且小鼠未能发展出与神经支配样的DM1肌病学特征。我们的发现表明,突触下的核和运动神经元处于DM1诱导的剪接病的风险中,这可能会影响神经肌肉接头的功能或稳定性。

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