首页> 外文期刊>Molecular & cellular proteomics: MCP >A Comparative Proteomic Strategy for Subcellular Proteome Research Icat Approach Coupled with Bioinformatics Prediction to Ascertain Rat Liver Mitochondrial Proteins and Indication of Mitochondrial Localization for Catalase
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A Comparative Proteomic Strategy for Subcellular Proteome Research Icat Approach Coupled with Bioinformatics Prediction to Ascertain Rat Liver Mitochondrial Proteins and Indication of Mitochondrial Localization for Catalase

机译:亚细胞蛋白质组研究Icat方法与生物信息学预测相结合的确定蛋白质组学策略,以确定大鼠肝脏线粒体蛋白并指示过氧化氢酶的线粒体定位

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Subcellular proteomics, as an important step to functional proteomics, has been a focus in proteomic research. However, the co-purification of "contaminating" proteins has been the major problem in all the subcellular proteomic research including all kinds of mitochondrial proteome research. It is often difficult to conclude whether these "contaminants" represent true endogenous partners or artificial associations induced by cell disruption or incomplete purification. To solve such a problem, we applied a high-throughput comparative proteome experimental strategy, ICAT approach performed with two-dimensional LC-MS/MS analysis, coupled with combinational usage of different bioinformatics tools, to study the proteome of rat liver mitochondria prepared with traditional centrifugation (CM) or further purified with a Nycodenz gradient (PM). A total of 169 proteins were identified and quantified convincingly in the ICAT analysis, in which 90 proteins have an ICAT ratio of PM:CM >1.0, while another 79 proteins have an ICAT ratio of PM:CM <1.0. Almost all the proteins annotated as mitochondrial according to Swiss-Prot annotation, bioinformatics prediction, and literature reports have a ratio of PM:CM >1.0, while proteins annotated as extracellular or secreted, cytoplasmic, endoplasmic reticulum, ribosomal, and so on have a ratio of PM:CM <1.0. Catalase and AP endonuclease 1, which have been known as peroxisomal and nuclear, respectively, have shown a ratio of PM:CM >1.0, confirming the reports about their mitochondrial location. Moreover, the 125 proteins with subcellular location annotation have been used as a testing dataset to evaluate the efficiency for ascertaining mitochondrial proteins by ICAT analysis and the bioinformatics tools such as PSORT, TargetP, SubLoc, MitoProt, and Predotar. The results indicated that ICAT analysis coupled with combinational usage of different bioinformatics tools could effectively ascertain mitochondrial proteins and distinguish contaminant proteins and even multilocation proteins. Using such a strategy, many novel proteins, known proteins without subcellular location annotation, and even known proteins that have been annotated as other locations have been strongly indicated for their mitochondrial location.
机译:亚细胞蛋白质组学作为功能蛋白质组学的重要步骤,一直是蛋白质组学研究的重点。但是,“污染”蛋白的共纯化一直是所有亚细胞蛋白质组学研究(包括各种线粒体蛋白质组学研究)中的主要问题。通常很难得出结论,这些“污染物”是代表真正的内源性伴侣,还是代表由于细胞破裂或纯化不完全而引起的人工关联。为解决此问题,我们应用了高通量比较蛋白质组实验策略,结合二维LC-MS / MS分析的ICAT方法以及不同生物信息学工具的组合使用,来研究用这种方法制备的大鼠肝线粒体的蛋白质组。传统离心(CM)或进一步用Nycodenz梯度(PM)纯化。在ICAT分析中,总共鉴定和定量了169种蛋白质,其中90种蛋白质的ICAT比PM:CM> 1.0,另外79种蛋白质的ICAT比PM:CM <1.0。根据Swiss-Prot注释,生物信息学预测和文献报道,几乎所有注释为线粒体的蛋白质的PM:CM比率> 1.0,而注释为细胞外或分泌,细胞质,内质网,核糖体等的蛋白质具有PM:CM的比率<1.0。过氧化氢酶和AP核酸内切酶1(分别被称为过氧化物酶体和核过氧化物酶)显示出PM:CM> 1.0的比率,证实了有关其线粒体位置的报道。此外,具有亚细胞位置注释的125种蛋白质已被用作测试数据集,以评估通过ICAT分析和诸如PSORT,TargetP,SubLoc,MitoProt和Predotar等生物信息学工具确定线粒体蛋白质的效率。结果表明,ICAT分析与不同生物信息学工具的组合使用可以有效地确定线粒体蛋白,并区分污染物蛋白甚至多位蛋白。使用这种策略,许多新的蛋白质,没有亚细胞位置注释的已知蛋白质,甚至被标注为其他位置的已知蛋白质的线粒体位置都得到了强烈指示。

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