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Experimental Analysis of the Arabidopsis Mitochondrial Proteome Highlights Signaling and Regulatory Components Provides Assessment of Targeting Prediction Programs and Indicates Plant-Specific Mitochondrial Proteins

机译:拟南芥线粒体蛋白质组的实验分析突出了信号传导和调控成分提供了针对目标预测程序的评估并表明了植物特定的线粒体蛋白

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摘要

A novel insight into Arabidopsis mitochondrial function was revealed from a large experimental proteome derived by liquid chromatography–tandem mass spectrometry. Within the experimental set of 416 identified proteins, a significant number of low-abundance proteins involved in DNA synthesis, transcriptional regulation, protein complex assembly, and cellular signaling were discovered. Nearly 20% of the experimentally identified proteins are of unknown function, suggesting a wealth of undiscovered mitochondrial functions in plants. Only approximately half of the experimental set is predicted to be mitochondrial by targeting prediction programs, allowing an assessment of the benefits and limitations of these programs in determining plant mitochondrial proteomes. Maps of putative orthology networks between yeast, human, and Arabidopsis mitochondrial proteomes and the Rickettsia prowazekii proteome provide detailed insights into the divergence of the plant mitochondrial proteome from those of other eukaryotes. These show a clear set of putative cross-species orthologs in the core metabolic functions of mitochondria, whereas considerable diversity exists in many signaling and regulatory functions.
机译:通过液相色谱-串联质谱分析得出的大量实验蛋白质组揭示了对拟南芥线粒体功能的新颖见解。在416种已鉴定蛋白质的实验组中,发现了大量与DNA合成,转录调控,蛋白质复合物装配和细胞信号传导有关的低丰度蛋白质。经过实验鉴定的蛋白质中,近20%的蛋白质功能未知,表明植物中存在大量未发现的线粒体功能。通过针对预测程序,可以预测只有大约一半的实验组是线粒体,从而可以评估这些程序在确定植物线粒体蛋白质组中的好处和局限性。酵母,人类和拟南芥线粒体蛋白质组与立克次氏体prowazekii蛋白质组之间的拟定正交网络图谱提供了植物线粒体蛋白质组与其他真核生物的差异的详细见解。这些在线粒体的核心代谢功能中显示出清晰的假定的跨物种直系同源物,而在许多信号传导和调节功能中存在相当大的多样性。

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