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定量和定性二维电泳分析 5 种鼠器官差异表达的线粒体蛋白质。

Quantitative and qualitative 2D electrophoretic analysis of differentially expressed mitochondrial proteins from five mouse organs.

机构信息

Department of Neuropediatrics, Charité University Medical Center, Berlin, Germany.

出版信息

Proteomics. 2013 Jan;13(1):179-95. doi: 10.1002/pmic.201100539. Epub 2012 Dec 18.

Abstract

Mitochondria fulfill many tissue-specific functions in cell metabolism. We set out to identify differences in the protein composition of mitochondria from five tissues frequently affected by mitochondrial disorders. The proteome of highly purified mitochondria from five mouse organs was separated by high-resolution 2DE. Tissue-specific spots were identified through nano-LC/ESI-MS/MS and quantified by densitometry in ten biological replicates. We identified 87 consistently deviating spots representing 48 proteins. The percentage of variant spots ranged between 4.2% and 6.0%; 21 proteins having tissue-specific isospots. Consistent tissue-specific processing/regulation was seen for carbamoyl-phosphate-synthase, aldehyde-dehydrogenase 2, ATP-synthase α-chain, and isocitrate-dehydrogenase α-subunit. Thirty tissue-specific proteins were associated with mitochondrial disorders in humans. We further identified alcohol-dehydrogenase, catalase, quinone-oxidoreductase, cyclophilin-A, and Upf0317, a potential biotin-carboxyl-carrier protein, which had not been annotated as "mitochondrial" in Gene Ontology or MitoCarta databases. Their targeting to the mitochondria was verified by transfection of full-length GFP-tagged plasmids. Given the high evolutionary conservation of mitochondrial metabolic pathways, these data further annotate the mitochondrial proteome and advance our understanding of the pathophysiology and tissue-specificity of symptoms seen in patients with mitochondrial disorders. The generation of 2D electrophoretic maps of the mitochondrial proteome using tissue specimens in the milligram range facilitates this technique for clinical applications and biomarker research.

摘要

线粒体在细胞代谢中完成许多组织特异性功能。我们着手确定五种经常受到线粒体疾病影响的组织中线粒体的蛋白质组成差异。通过高分辨率 2DE 分离来自五个小鼠器官的高度纯化线粒体的蛋白质组。通过纳升 LC/ESI-MS/MS 鉴定组织特异性斑点,并在十个生物学重复中通过密度计进行定量。我们鉴定了 87 个一致偏离的斑点,代表 48 种蛋白质。变异斑点的百分比在 4.2%到 6.0%之间;21 种蛋白质具有组织特异性等电点。氨甲酰磷酸合成酶、醛脱氢酶 2、ATP 合酶 α 链和异柠檬酸脱氢酶 α 亚基的一致组织特异性加工/调节。30 种组织特异性蛋白与人类线粒体疾病有关。我们进一步鉴定了醇脱氢酶、过氧化氢酶、醌氧化还原酶、亲环素 A 和 Upf0317,这是一种潜在的生物素羧基载体蛋白,在基因本体论或 MitoCarta 数据库中未被注释为“线粒体”。通过转染全长 GFP 标记质粒,验证了它们靶向线粒体。鉴于线粒体代谢途径的高度进化保守性,这些数据进一步注释了线粒体蛋白质组,并加深了我们对线粒体疾病患者症状的病理生理学和组织特异性的理解。使用毫克范围内的组织标本生成线粒体蛋白质组的 2D 电泳图谱,为该技术在临床应用和生物标志物研究中提供了便利。

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