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首页> 外文期刊>The international journal of biochemistry and cell biology >A 3-methylcrotonyl-CoA carboxylase deficient human skin fibroblast transcriptome reveals underlying mitochondrial dysfunction and oxidative stress
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A 3-methylcrotonyl-CoA carboxylase deficient human skin fibroblast transcriptome reveals underlying mitochondrial dysfunction and oxidative stress

机译:3-甲基巴豆酰-CoA羧化酶缺陷型人皮肤成纤维细胞转录组显示潜在的线粒体功能障碍和氧化应激

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Isolated 3-methylcrotonyl-CoA carboxylase (MCC) deficiency is an autosomal recessive inherited metabolic disease of leucine catabolism with a highly variable phenotype. Apart from extensive mutation analyses of the MCCCI and MCCC2 genes encoding 3-methylcrotonyl-CoA carboxylase (EC 6.4.1.4), molecular data on MCC deficiency gene expression studies in human tissues is lacking. For IEMs, unbiased '-omics' approaches are starting to reveal the secondary cellular responses to defects in biochemical pathways. Here we present the first whole genome expression profile of immortalized cultured skin fibroblast cells of two clinically affected MCC deficient patients and two healthy individuals generated using Affymetrix (R) HuExST1.0 arrays. There were 16191 significantly differentially expressed transcript IDs of which 3591 were well annotated and present in the predefined knowledge database of Ingenuity Pathway Analysis software used for downstream functional analyses. The most noticeable feature of this MCCA deficient skin fibroblast transcriptome was the typical genetic hallmark of mitochondrial dysfunction, decreased antioxidant response and disruption of energy homeostasis, which was confirmed by mitochondrial functional analyses. The MCC deficient transcriptome seems to predict oxidative stress that could alter the complex secondary cellular response that involve genes of the glycolysis, the TCA cycle, OXPHOS, gluconeogenesis, beta-oxidation and the branched-chain fatty acid metabolism. An important emerging insight from this human MCCA transcriptome in combination with previous reports is that chronic exposure to the primary and secondary metabolites of MCC deficiency and the resulting oxidative stress might impact adversely on the quality of life and energy levels, irrespective of whether MCC deficient individuals are clinically affected or asymptomatic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:分离的3-甲基巴豆酰基-CoA羧化酶(MCC)缺乏症是亮氨酸分解代谢的常染色体隐性遗传遗传疾病,具有高度可变的表型。除了对编码3-甲基巴豆酰辅酶A羧化酶的MCCCI和MCCC2基因进行广泛的突变分析(EC 6.4.1.4)外,还缺乏有关人体组织中MCC缺乏基因表达研究的分子数据。对于IEM,无偏见的“-组学”方法开始揭示对生化途径缺陷的继发性细胞反应。在这里,我们介绍了使用Affymetrix(R)HuExST1.0阵列产生的两名临床受影响的MCC缺陷患者和两名健康个体的永生化培养的皮肤成纤维细胞的第一个完整基因组表达谱。存在16191个显着差异表达的笔录ID,其中3591个得到了很好的注释,并存在于用于下游功能分析的Ingenuity Pathway Analysis软件的预定义知识数据库中。 MCCA缺乏的皮肤成纤维细胞转录组最明显的特征是线粒体功能异常的典型遗传标志,抗氧化反应降低和能量稳态的破坏,这已通过线粒体功能分析得到了证实。 MCC缺失的转录组似乎预示着氧化应激可能改变复杂的次级细胞反应,涉及糖酵解,TCA循环,OXPHOS,糖异生,β-氧化和支链脂肪酸代谢等基因。该人MCCA转录组与先前报道相结合的一项重要的新发现是,长期暴露于MCC缺乏症的主要和次要代谢产物以及由此产生的氧化应激可能对生活质量和能量水平产生不利影响,而与MCC缺乏症患者无关受临床影响或无症状。 (C)2016 Elsevier Ltd.保留所有权利。

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