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SOLUTION ISOELECTRIC FOCUSING AND ITS APPLICATION IN COMPARATIVE PROTEOMIC STUDIES OF NUCLEAR PROTEINS

机译:溶液等电聚焦及其在核蛋白比较蛋白质组学研究中的应用

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摘要

In proteomic research, experimental and computational approaches are combined to provide global analysis of the entire proteomes of cells and tissues. The identification and quantification of multiple proteins, which constitute a specific biological system, are important for understanding complex problems in biology. The coupling of highly efficient separations and mass spectrometry instrumentation is evolving rapidly and is being widely applied to problems ranging from biological function to drug development. Development of rapid and high-resolution separation technology is an important field in proteomics. In this study, a solution isoelectric focusing apparatus was modified and built into a two-dimensional separation method for peptides. Newly commercialized isoelectric membranes, which carry immobilized ampholytes, were integrated to establish the pH boundaries in this apparatus. High-performance liquid chromatography was employed as the second dimension, integrated with mass spectrometry. An insoluble nuclear protein fraction was used for optimization and evaluation of this method. The insoluble nuclear proteins were recovered from the nuclei of human MCF-7 human cancer cells and cleaved enzymatically. The resulting peptides were analyzed by the two-dimensional separation method, which coupled solution isoelectric focusing with reversed-phase liquid chromatography interfaced with mass spectrometry. A total of 281 peptides corresponding to 167 proteins were identified by this experiment. The high sample capacity and concentration effect of isoelectric focusing make it possible to detect relatively low abundance proteins in a complex mixture. This two-dimensional separation method dramatically improves peptide detection and identification compared with a single dimension LC-MS analysis. This method has been demonstrated to provide efficient and reproducible separation of both protein and peptides. The two-dimensional separation method was combined with proteolytic isotopic labeling for comparative analysis of protein expression in different cells. Abundances of nuclear proteins from three different drug resistant MCF-7 cancer cell lines were compared to those from the drug susceptible parent cell line using this combined strategy. The abundances of 19 proteins were found to be significantly changed. Their functions are considered in relation to potential mechanisms of in drug resistance.
机译:在蛋白质组学研究中,将实验和计算方法结合起来,可以对细胞和组织的整个蛋白质组进行全局分析。鉴定和定量构成一个特定生物学系统的多种蛋白质,对于理解生物学中的复杂问题很重要。高效分离与质谱仪器的结合正在迅速发展,并已广泛应用于从生物学功能到药物开发的各种问题。快速高分辨率分离技术的发展是蛋白质组学的重要领域。在这项研究中,对溶液等电聚焦设备进行了改进,并将其内置于肽的二维分离方法中。整合了固定化两性电解质的新型商业化等电膜,以在该设备中建立pH边界。高效液相色谱法是第二维方法,与质谱法整合在一起。不溶性核蛋白组分用于优化和评估该方法。从人MCF-7人癌细胞的核中回收不溶性核蛋白,并进行酶切。通过二维分离方法分析所得的肽,该方法将溶液等电聚焦与反相液相色谱与质谱联用。通过该实验共鉴定了对应于167种蛋白质的281种肽。等电聚焦的高样品容量和浓缩效果使得可以检测复杂混合物中相对较低的丰度蛋白质。与一维LC-MS分析相比,这种二维分离方法显着改善了肽的检测和鉴定。已证明该方法可提供有效且可重复的蛋白质和多肽分离。二维分离方法与蛋白水解同位素标记相结合,可比较分析不同细胞中的蛋白表达。使用这种联合策略,将来自三种不同耐药MCF-7癌细胞系的核蛋白的丰度与对药物敏感的亲代细胞系的核蛋白的丰度进行了比较。发现19种蛋白质的丰度发生了显着变化。考虑其功能与抗药性的潜在机制有关。

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    An Yanming;

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  • 年度 2005
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