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Protein signatures of oxidative stress response in a patient specific cell line model for autism

机译:孤独症患者特定细胞系模型中氧化应激反应的蛋白质特征

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摘要

BackgroundKnown genetic variants can account for 10% to 20% of all cases with autism spectrum disorders (ASD). Overlapping cellular pathomechanisms common to neurons of the central nervous system (CNS) and in tissues of peripheral organs, such as immune dysregulation, oxidative stress and dysfunctions in mitochondrial and protein synthesis metabolism, were suggested to support the wide spectrum of ASD on unifying disease phenotype. Here, we studied in patient-derived lymphoblastoid cell lines (LCLs) how an ASD-specific mutation in ribosomal protein RPL10 (RPL10[H213Q]) generates a distinct protein signature. We compared the RPL10[H213Q] expression pattern to expression patterns derived from unrelated ASD patients without RPL10[H213Q] mutation. In addition, a yeast rpl10 deficiency model served in a proof-of-principle study to test for alterations in protein patterns in response to oxidative stress.
机译:背景已知的遗传变异可占自闭症谱系障碍(ASD)所有病例的10%至20%。提示中枢神经系统(CNS)神经元和周围器官组织常见的细胞病理机制重叠,例如免疫失调,线粒体氧化应激和蛋白质合成代谢功能异常,可支持广泛的ASD统一疾病表型。 。在这里,我们研究了来自患者的淋巴母细胞样细胞系(LCL),如何在核糖体蛋白RPL10(RPL10 [H213Q])中产生ASD特异性突变,从而产生独特的蛋白特征。我们将RPL10 [H213Q]表达模式与无RPL10 [H213Q]突变的无关ASD患者衍生的表达模式进行了比较。此外,酵母rpl10缺乏症模型在一项原理验证研究中用于测试响应氧化应激的蛋白质模式的变化。

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