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首页> 外文期刊>Molecular Neurobiology >Metabo-lipidomics of Fibroblasts and Mitochondrial-Endoplasmic Reticulum Extracts from ALS Patients Shows Alterations in Purine, Pyrimidine, Energetic, and Phospholipid Metabolisms
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Metabo-lipidomics of Fibroblasts and Mitochondrial-Endoplasmic Reticulum Extracts from ALS Patients Shows Alterations in Purine, Pyrimidine, Energetic, and Phospholipid Metabolisms

机译:来自ALS患者的成纤维细胞和线粒体 - 内质网的元脂质谱系显示出嘌呤,嘧啶,能量和磷脂代谢的改变

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Amyotrophic lateral sclerosis (ALS) is characterized by a wide metabolic remodeling, as shown by recent metabolomics and lipidomics studies performed in samples from patient cohorts and experimental animal models. Here, we explored the metabolome and lipidome of fibroblasts from sporadic ALS patients (n=13) comparatively to age- and sex-matched controls (n=11), and the subcellular fraction containing the mitochondria and endoplasmic reticulum (mito-ER), given that mitochondrial dysfunctions and ER stress are important features of ALS patho-mechanisms. We also assessed the mitochondrial oxidative respiration and the mitochondrial genomic (mtDNA) sequence, although without yielding significant differences. Compared to controls, ALS fibroblasts did not exhibit a mitochondrial respiration defect nor an increased proportion of mitochondrial DNA mutations. In addition, non-targeted metabolomics and lipidomics analyses identified 124 and 127 metabolites, and 328 and 220 lipids in whole cells and the mito-ER fractions, respectively, along with partial least-squares-discriminant analysis (PLS-DA) models being systematically highly predictive of the disease. The most discriminant metabolomic features were the alteration of purine, pyrimidine, and energetic metabolisms, suggestive of oxidative stress and of pro-inflammatory status. The most important lipidomic feature in the mito-ER fraction was the disturbance of phosphatidylcholine PC (36:4p) levels, which we had previously reported in the cerebrospinal fluid of ALS patients and in the brain from an ALS mouse model. Thus, our results reveal that fibroblasts from sporadic ALS patients share common metabolic remodeling, consistent with other metabolic studies performed in ALS, opening perspectives for further exploration in this cellular model in ALS.
机译:肌营养的外侧硬化症(ALS)的特征在于众所周知的代谢重塑,如最近的代谢组科和脂质族学研究所示,在来自患者队列和实验动物模型的样本中进行。在这里,我们探讨了散发性Als患者(n = 13)的成纤维细胞的成纤维细胞的代谢物和脂质组,而是相比和性匹配的对照(n = 11),以及含有线粒体和内质网(MITO-ER)的亚细胞级分,鉴于线粒体功能障碍和ER应力是ALS Patho机制的重要特征。我们还评估了线粒体氧化呼吸和线粒体基因组(MTDNA)序列,但不产生显着差异。与对照相比,Als成纤维细胞没有表现出线粒体呼吸缺损,也没有增加的线粒体DNA突变比例。另外,非靶向代谢组和脂质学分析分别在整个细胞和MITO-ER级分中鉴定了124和127代谢物,以及328和220脂质,以及系统的局部最小二乘判别分析(PLS-DA)模型高度预测疾病。最判别的代谢特征是嘌呤,嘧啶和能量代谢的改变,暗示氧化应激和促炎症状态。 MITO-ER级分中最重要的脂质化特征是磷脂酰胆碱PC(36:4P)水平的干扰,我们以前在ALS患者的脑脊液和来自ALS小鼠模型中的脑中的脑脊液中。因此,我们的结果表明,来自散发症患者的成纤维细胞共享常见的代谢重塑,与ALS中进行的其他代谢研究一致,在ALS中的这种细胞模型中进行进一步探索的观点。

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