Department of Biochemistry and Interdisciplinary Plant Group, University of Missouri, Columbia, Missouri 65211.
Plant Physiol. 2014 Feb;164(2):637-53. doi: 10.1104/pp.113.229054. Epub 2013 Dec 18.
Mitochondria are called the powerhouses of the cell. To better understand the role of mitochondria in maintaining and regulating metabolism in storage tissues, highly purified mitochondria were isolated from dormant potato tubers (Solanum tuberosum 'Folva') and their proteome investigated. Proteins were resolved by one-dimensional gel electrophoresis, and tryptic peptides were extracted from gel slices and analyzed by liquid chromatography-tandem mass spectrometry using an Orbitrap XL. Using four different search programs, a total of 1,060 nonredundant proteins were identified in a quantitative manner using normalized spectral counts including as many as 5-fold more "extreme" proteins (low mass, high isoelectric point, hydrophobic) than previous mitochondrial proteome studies. We estimate that this compendium of proteins represents a high coverage of the potato tuber mitochondrial proteome (possibly as high as 85%). The dynamic range of protein expression spanned 1,800-fold and included nearly all components of the electron transport chain, tricarboxylic acid cycle, and protein import apparatus. Additionally, we identified 71 pentatricopeptide repeat proteins, 29 membrane carriers/transporters, a number of new proteins involved in coenzyme biosynthesis and iron metabolism, the pyruvate dehydrogenase kinase, and a type 2C protein phosphatase that may catalyze the dephosphorylation of the pyruvate dehydrogenase complex. Systematic analysis of prominent posttranslational modifications revealed that more than 50% of the identified proteins harbor at least one modification. The most prominently observed class of posttranslational modifications was oxidative modifications. This study reveals approximately 500 new or previously unconfirmed plant mitochondrial proteins and outlines a facile strategy for unbiased, near-comprehensive identification of mitochondrial proteins and their modified forms.
线粒体被称为细胞的“动力工厂”。为了更好地理解线粒体在维持和调节储存组织代谢中的作用,我们从休眠的马铃薯块茎(Solanum tuberosum‘Folva’)中分离出高度纯化的线粒体,并对其蛋白质组进行了研究。蛋白质通过一维凝胶电泳进行分离,然后从凝胶片中提取肽段,使用 Orbitrap XL 通过液相色谱-串联质谱法进行分析。使用四个不同的搜索程序,总共以定量方式鉴定了 1060 种非冗余蛋白质,包括多达 5 倍的“极端”蛋白质(低质量、高等电点、疏水性),比以前的线粒体蛋白质组研究更多。我们估计,这个马铃薯块茎线粒体蛋白质组的综合涵盖了高蛋白质(可能高达 85%)。蛋白质表达的动态范围跨越了 1800 倍,包括电子传递链、三羧酸循环和蛋白质导入装置的几乎所有组成部分。此外,我们还鉴定了 71 种五肽重复蛋白、29 种膜载体/转运蛋白、一些新的参与辅酶生物合成和铁代谢的蛋白质、丙酮酸脱氢酶激酶以及一种可能催化丙酮酸脱氢酶复合物去磷酸化的 2C 型蛋白磷酸酶。对显著的翻译后修饰的系统分析表明,超过 50%的鉴定蛋白至少有一种修饰。最显著的翻译后修饰类别是氧化修饰。本研究揭示了大约 500 种新的或以前未确认的植物线粒体蛋白,并概述了一种用于非偏性、近乎全面鉴定线粒体蛋白及其修饰形式的简便策略。