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Neuronopathic Gaucher's disease: Induced pluripotent stem cells for disease modelling and testing chaperone activity of small compounds

机译:神经病性高雪氏病:诱导性多能干细胞用于疾病建模和测试小分子化合物的伴侣活性

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Gaucher's disease (GD) is caused by mutations in the GBA1 gene, which encodes acid-β-glucosidase, an enzyme involved in the degradation of complex sphingolipids. While the non-neuronopathic aspects of the disease can be treated with enzyme replacement therapy (ERT), the early-onset neuronopathic form currently lacks therapeutic options and is lethal. We have developed an induced pluripotent stem cell (iPSc) model of neuronopathic GD. Dermal fibroblasts of a patient with a P.[LEU444PRO];[GLY202ARG] genotype were transfected with a loxP-flanked polycistronic reprogramming cassette consisting of Oct4, Sox2, Klf4 and c-Myc and iPSc lines derived. A non-integrative lentiviral vector expressing Cre recombinase was used to eliminate the reprogramming cassette from the reprogrammed cells. Our GD iPSc express pluripotent markers, differentiate into the three germ layers, form teratomas, have a normal karyotype and show the same mutations and low acid-β-glucosidase activity as the original fibroblasts they were derived from. We have differentiated them efficiently into neurons and also into macrophages without observing deleterious effects of the mutations on the differentiation process. Using our system as a platform to test chemical compounds capable of increasing acid-β-glucosidase activity, we confirm that two nojirimycin analogues can rescue protein levels and enzyme activity in the cells affected by the disease.
机译:高雪氏病(GD)是由GBA1基因的突变引起的,该基因编码酸性β-葡萄糖苷酶,该酶参与复杂的鞘脂的降解。尽管可以通过酶替代疗法(ERT)来治疗该疾病的非神经病变,但目前早期发作的神经病变形式尚缺乏治疗选择,并且具有致命性。我们已经开发了神经性GD的诱导性全能干细胞(iPSc)模型。将具有P. [LEU444PRO]; [GLY202ARG]基因型的患者的皮肤成纤维细胞用loxP侧翼的多顺反子重编程盒转染,该盒由Oct4,Sox2,Klf4和c-Myc和iPSc系组成。表达Cre重组酶的非整合型慢病毒载体被用于从重编程的细胞中消除重编程盒。我们的GD iPSc表达多能性标志物,分化为三个胚层,形成畸胎瘤,具有正常的核型,并且显示出与原始来源的成纤维细胞相同的突变和低酸-β-葡萄糖苷酶活性。我们已经有效地将它们分化为神经元和巨噬细胞,而没有观察到突变对分化过程的有害影响。使用我们的系统作为测试能够增加酸-β-葡萄糖苷酶活性的化合物的平台,我们证实了两种诺吉霉素类似物可以挽救受疾病影响的细胞中的蛋白质水平和酶活性。

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