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Dysregulations of Expression of Genes of the Ubiquitin/SUMO Pathways in an In Vitro Model of Amyotrophic Lateral Sclerosis Combining Oxidative Stress and SOD1 Gene Mutation

机译:在组合氧化应激和SOD1基因突变的肌萎缩侧硬化的体外模型中泛素/ SUMO途径的表达的呼吸困难

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摘要

Protein aggregates in affected motor neurons are a hallmark of amyotrophic lateral sclerosis (ALS), but the molecular pathways leading to their formation remain incompletely understood. Oxidative stress associated with age, the major risk factor in ALS, contributes to this neurodegeneration in ALS. We show that several genes coding for enzymes of the ubiquitin and small ubiquitin-related modifier (SUMO) pathways exhibit altered expression in motor neuronal cells exposed to oxidative stress, such as the CCNF gene mutated in ALS patients. Eleven of these genes were further studied in conditions combining oxidative stress and the expression of an ALS related mutant of the superoxide dismutase 1 (SOD1) gene. We observed a combined effect of these two environmental and genetic factors on the expression of genes, such as Uhrf2, Rbx1, Kdm2b, Ube2d2, Xaf1, and Senp1. Overall, we identified dysregulations in the expression of enzymes of the ubiquitin and SUMO pathways that may be of interest to better understand the pathophysiology of ALS and to protect motor neurons from oxidative stress and genetic alterations.
机译:受影响的电动机神经元的蛋白质聚集体是肌萎缩侧面硬化(ALS)的标志,但导致其形成的分子途径仍然不完全了解。与年龄相关的氧化应激,ALS的主要危险因素,有助于这种神经变性在ALS中。我们表明,在暴露于氧化应激的电动机神经元细胞中表现出泛素和小泛素相关改性剂(SUMO)途径的酶编码的几个基因,例如在ALS患者中突变的CCNF基因。在组合氧化应激和超氧化物歧化酶1(SOD1)基因的ALS相关突变体的表达的条件下进一步研究了11个这些基因。我们观察到这两个环境和遗传因素对基因表达的综合影响,例如UHRF2,RBX1,KDM2B,UBE2D2,XAF1和SENP1。总体而言,我们鉴定了泛素和Sumo途径表达的酶促抑制,其可能感兴趣以更好地了解ALS的病理生理学和保护电机神经元免受氧化应激和遗传改变。

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