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Application of the Accurate Mass and Time Tag Approach to the Proteome Analysis of Sub-cellular Fractions Obtained from Rhodobacter sphaeroides 2.4.1. Aerobic and Photosynthetic Cell Cultures

机译:精确质量和时间标签方法在球形红球菌2.4.1获得的亚细胞组分的蛋白质组学分析中的应用。有氧和光合细胞培养

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摘要

The high-throughput accurate mass and time (AMT) tag proteomic approach was utilized to characterize the proteomes for cytoplasm, cytoplasmic membrane, periplasm, and outer membrane fractions from aerobic and photosynthetic cultures of the gram-nagtive bacterium Rhodobacter sphaeroides 2.4.1. In addition, we analyzed the proteins within purified chromatophore fractions that house the photosynthetic apparatus from photosynthetically grown cells. In total, 8300 peptides were identified with high confidence from at least one subcellular fraction from either cell culture. These peptides were derived from 1514 genes or 35% percent of proteins predicted to be encoded by the genome. A significant number of these proteins were detected within a single subcellular fraction and their localization was compared to in silico predictions. However, the majority of proteins were observed in multiple subcellular fractions, and the most likely subcellular localization for these proteins was investigated using a Z-score analysis of estimated protein abundance along with clustering techniques. Good (81%) agreement was observed between the experimental results and in silico predictions. The AMT tag approach provides localization evidence for those proteins that have no predicted localization information, those annotated as putative proteins, and/or for those proteins annotated as hypothetical and conserved hypothetical.
机译:高通量准确质量和时间(AMT)标签蛋白质组学方法用于表征革兰氏阴性球菌红球菌2.4.1的有氧和光合培养的细胞质,细胞质膜,周质和外膜级分的蛋白质组。此外,我们分析了从光合作用生长的细胞容纳光合作用装置的纯化的色谱级分中的蛋白质。总共从任一细胞培养物中的至少一个亚细胞级分中高可信度地鉴定出8300种肽。这些肽来自1514个基因,或预计由基因组编码的蛋白质的35%。在单个亚细胞级分中检测到大量这些蛋白质,并将其定位与计算机预测相比较。但是,大多数蛋白质在多个亚细胞部分中观察到,并且使用估计的蛋白质丰度的Z值分析和聚类技术研究了这些蛋白质最可能的亚细胞定位。在实验结果和计算机模拟预测之间观察到良好(81%)的一致性。 AMT标签方法为那些没有预测定位信息的蛋白质,标注为推定蛋白质的蛋白质和/或标注为假设和保守假设的蛋白质提供了定位证据。

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