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Mutant human embryonic stem cells reveal neurite and synapse formation defects in type 1 myotonic dystrophy.

机译:突变的人类胚胎干细胞在1型强直性营养不良中揭示了神经突和突触形成缺陷。

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摘要

Myotonic dystrophy type 1 (DM1) is a multisystem disorder affecting a variety of organs, including the central nervous system. By using neuronal progeny derived from human embryonic stem cells carrying the causal DM1 mutation, we have identified an early developmental defect in genes involved in neurite formation and the establishment of neuromuscular connections. Differential gene expression profiling and quantitative RT-PCR revealed decreased expression of two members of the SLITRK family in DM1 neural cells and in DM1 brain biopsies. In addition, DM1 motoneuron/muscle cell cocultures showed alterations that are consistent with the known role of SLITRK genes in neurite outgrowth, neuritogenesis, and synaptogenesis. Rescue and knockdown experiments suggested that the functional defects can be directly attributed to SLITRK misexpression. These neuropathological mechanisms may be clinically significant for the functional changes in neuromuscular connections associated with DM1.
机译:1型强直性营养不良(DM1)是一种多系统疾病,影响多种器官,包括中枢神经系统。通过使用携带有因果DM1突变的人胚胎干细胞衍生的神经元后代,我们发现了与神经突形成和神经肌肉连接建立有关的基因的早期发育缺陷。差异基因表达谱和定量RT-PCR显示,SLITRK家族的两个成员在DM1神经细胞和DM1脑活检中的表达降低。另外,DM1运动神经元/肌肉细胞共培养物显示出与SLITRK基因在神经突增生,神经形成和突触形成中的已知作用一致的变化。救援和击倒实验表明,功能缺陷可以直接归因于SLITRK的错误表达。这些神经病理学机制对于与DM1相关的神经肌肉连接的功能变化可能在临床上具有重要意义。

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