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首页> 外文期刊>Journal of proteome research >Mutations in the saccharomyces cerevisiae succinate dehydrogenase result in distinct metabolic phenotypes revealed through ~1H NMR-based metabolic footprinting
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Mutations in the saccharomyces cerevisiae succinate dehydrogenase result in distinct metabolic phenotypes revealed through ~1H NMR-based metabolic footprinting

机译:酿酒酵母琥珀酸脱氢酶中的突变导致基于基于1H NMR的代谢足迹揭示的独特代谢表型

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Metabolomics is a powerful method of examining the intricate connections between mutations, metabolism, and disease. Metabolic footprinting examines the extracellular metabolome or exometabolome. We employed NMR-based metabolic footprinting and multivariate statistical analysis to examine a yeast model of mitochondrial dysfunction. Succinate dehydrogenase (SDH) is a component of both the tricarboxylic acid cycle and the mitochondrial respiratory chain. Mutations in the human SDH are linked to a variety of cancers or neurodegenerative disorders, highlighting the genotype/phenotype complexity associated with SDH dysfunction. To gain insight into the underlying global metabolic consequences of SDH dysfunction, we examined the metabolic footprints of SDH3 and SDH4 mutants. We identified and quantified 36 metabolites in the exometabolome. Our results indicate that SDH mutations cause significant alterations to several areas of yeast metabolism. Multivariate statistical analysis allowed us to discriminate between the different metabotypes of individual mutants, including mutants that were phenotypically indistinguishable. Metabotypes were highly correlated to mutant growth yields, suggesting that the characterization of metabotypes offers a rapid means of investigating the phenotype of a new mutation. Our study provides novel insight into the metabolic effects of SDH dysfunction and highlights the effectiveness of metabolic footprinting for examining complex disorders, such as mitochondrial diseases.
机译:代谢组学是检查突变,代谢和疾病之间复杂联系的有力方法。代谢足迹法检查细胞外代谢组或外代谢组。我们采用基于核磁共振的代谢足迹和多元统计分析来检查线粒体功能障碍的酵母模型。琥珀酸脱氢酶(SDH)是三羧酸循环和线粒体呼吸链的组成部分。人SDH中的突变与多种癌症或神经退行性疾病有关,这突出了与SDH功能障碍相关的基因型/表型复杂性。为了深入了解SDH功能障碍的潜在全球代谢后果,我们检查了SDH3和SDH4突变体的代谢足迹。我们确定并量化了exometabolome中的36种代谢产物。我们的结果表明,SDH突变导致酵母代谢的几个区域发生重大变化。多变量统计分析使我们能够区分单个突变体的不同代谢型,包括在表型上无法区分的突变体。代谢型与突变体的生长产量高度相关,表明代谢型的表征提供了一种研究新突变表型的快速方法。我们的研究为SDH功能障碍的代谢作用提供了新颖的见解,并强调了代谢足迹在检查复杂疾病(如线粒体疾病)中的有效性。

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