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Dystrophin deficiency leads to dysfunctional glutamate clearance in iPSC derived astrocytes

机译:缺乏症缺乏导致IPSC衍生的星形胶质细胞的功能障碍谷氨酸间隙

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Duchenne muscular dystrophy (DMD) results, beside muscle degeneration in cognitive defects. As neuronal function is supported by astrocytes, which express dystrophin, we hypothesized that loss of dystrophin from DMD astrocytes might contribute to these cognitive defects. We generated cortical neuronal and astrocytic progeny from induced pluripotent stem cells (PSC) from six DMD subjects carrying different mutations and several unaffected PSC lines. DMD astrocytes displayed cytoskeletal abnormalities, defects in Casup+2/sup homeostasis and nitric oxide signaling. In addition, defects in glutamate clearance were identified in DMD PSC-derived astrocytes; these deficits were related to a decreased neurite outgrowth and hyperexcitability of neurons derived from healthy PSC. Read-through molecule restored dystrophin expression in DMD PSC-derived astrocytes harboring a premature stop codon mutation, corrected the defective astrocyte glutamate clearance and prevented associated neurotoxicity. We propose a role for dystrophin deficiency in defective astroglial glutamate homeostasis which initiates defects in neuronal development.
机译:Duchenne肌营养不良(DMD)结果,在认知缺陷中肌肉变性旁边。由于神经元功能由星形胶质细胞负载,其表达脱诊素,我们假设来自DMD星形胶质细胞的营养不良素的丧失可能导致这些认知缺陷。我们从患有不同突变的六种DMD受试者和几种未受影响的PSC线的诱导多能干细胞(PSC)产生皮质神经元和星形细胞后代。 DMD星形胶质细胞显示细胞骨骼异常,Ca +2 + 2稳态缺陷稳态和一氧化氮信号。此外,在DMD PSC衍生的星形胶质细胞中鉴定出谷氨酸间隙的缺陷;这些缺陷与来自健康PSC的神经元的神经突差异和过度尺寸有关。读数分子恢复营养不良蛋白表达在DMD PSC衍生的星形胶质细胞中,涉及过早的止芯突变突变,​​纠正了缺陷的星形胶质细胞谷氨酸谷氨酸间隙并预防相关神经毒性。我们提出了一种缺陷的星形蛋白酶谷氨酸术语缺乏症的作用,引发了神经元发育的缺陷。

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