首页> 外文期刊>Annals of Clinical and Translational Neurology >Selected missense mutations impair frataxin processing in Friedreich ataxia
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Selected missense mutations impair frataxin processing in Friedreich ataxia

机译:某些错义突变会破坏弗雷德里希共济失调中的frataxin加工

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Abstract Objective Frataxin (FXN) is a highly conserved mitochondrial protein. Reduced FXN levels cause Friedreich ataxia, a recessive neurodegenerative disease. Typical patients carry GAA repeat expansions on both alleles, while a subgroup of patients carry a missense mutation on one allele and a GAA repeat expansion on the other. Here, we report that selected disease-related FXN missense mutations impair FXN localization, interaction with mitochondria processing peptidase, and processing. Methods Immunocytochemical studies and subcellular fractionation were performed to study FXN import into the mitochondria and examine the mechanism by which mutations impair FXN processing. Coimmunoprecipitation was performed to study the interaction between FXN and mitochondrial processing peptidase. A proteasome inhibitor was used to model traditional therapeutic strategies. In addition, clinical profiles of subjects with and without point mutations were compared in a large natural history study. Results FXN I 154F and FXN G 130V missense mutations decrease FXN 81?¢????210 levels compared with FXN WT , FXN R 165C , and FXN W 155R , but do not block its association with mitochondria. FXN I 154F and FXN G 130V also impair FXN maturation and enhance the binding between FXN 42?¢????210 and mitochondria processing peptidase. Furthermore, blocking proteosomal degradation does not increase FXN 81?¢????210 levels. Additionally, impaired FXN processing also occurs in fibroblasts from patients with FXN G 130V . Finally, clinical data from patients with FXN G 130V and FXN I 154F mutations demonstrates a lower severity compared with other individuals with Friedreich ataxia. Interpretation These data suggest that the effects on processing associated with FXN G 130V and FXN I 154F mutations lead to higher levels of partially processed FXN, which may contribute to the milder clinical phenotypes in these patients.
机译:摘要目的Frataxin(FXN)是一种高度保守的线粒体蛋白。 FXN水平降低会引起Friedreich共济失调,这是一种隐性神经退行性疾病。典型的患者在两个等位基因上均具有GAA重复扩增,而亚组患者在一个等位基因上具有错义突变,而在另一位等位基因上则具有GAA重复扩增。在这里,我们报告选择与疾病相关的FXN错义突变会损害FXN定位,与线粒体加工肽酶的相互作用以及加工过程。方法进行了免疫细胞化学研究和亚细胞分级研究,以研究FXN进入线粒体的情况,并研究突变影响FXN加工的机制。进行共免疫沉淀研究FXN和线粒体加工肽酶之间的相互作用。蛋白酶体抑制剂用于模拟传统治疗策略。此外,在一项大型自然史研究中比较了有无点突变的受试者的临床概况。结果与FXN WT,FXN R 165C和FXN W 155R相比,FXN I 154F和FXN G 130V错义突变降低了FXN 81 -210的水平,但不阻止其与线粒体的关联。 FXN I 154F和FXN G 130V也损害了FXN的成熟并增强了FXN 42→210和线粒体加工肽酶之间的结合。此外,阻断蛋白体降解不会增加FXN 81 -210的水平。此外,FXN G 130V患者的成纤维细胞中也会发生FXN处理受损的情况。最后,来自FXN G 130V和FXN I 154F突变的患者的临床数据表明,与其他患有Friedreich共济失调的患者相比,其严重程度较低。解释这些数据表明,对与FXN G 130V和FXN I 154F突变相关的加工的影响导致部分加工的FXN的水平升高,这可能导致这些患者的临床表型更温和。

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