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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Comparison of three methods for fractionation and enrichment of low molecular weight proteins for SELDI-TOF-MS differential analysis
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Comparison of three methods for fractionation and enrichment of low molecular weight proteins for SELDI-TOF-MS differential analysis

机译:三种用于SELDI-TOF-MS差异分析的低分子量蛋白质的分离和富集方法的比较

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摘要

In most diseases, the clinical need for serum/plasma markers has never been so crucial, not only for diagnosis, but also for the selection of the most efficient therapies, as well as exclusion of ineffective or toxic treatment. Due to the high sample complexity, prefractionation is essential for exploring the deep proteome and finding specific markers. In this study, three different sample preparation methods (i.e., highly abundant protein precipitation, restricted access materials (RAM) combined with IMAC chromatography and peptide ligand affinity beads) were investigated in order to select the best fractionation step for further differential proteomic experiments focusing on the LMW proteome (MW inferior to 40,000 Da). Indeed, the aim was not to cover the entire plasma/serum proteome, but to enrich potentially interesting tissue leakage proteins. These three methods were evaluated on their reproducibility, on the SELDI-TOF-MS peptide/protein peaks generated after fractionation and on the information supplied. The studied methods appeared to give complementary information and presented good reproducibility (below 20%). Peptide ligand affinity beads were found to provide efficient depletion of HMW proteins and peak enrichment in protein/peptide profiles.
机译:在大多数疾病中,对血清/血浆标志物的临床需求从未如此重要,不仅对于诊断,而且对于选择最有效的治疗方法以及排除无效或毒性的治疗方法也是如此。由于样品复杂性高,预分级对于探索深层蛋白质组和寻找特定标记物至关重要。在这项研究中,研究了三种不同的样品制备方法(即高度丰富的蛋白质沉淀,与IMAC色谱法结合使用的受限进入材料(RAM)和肽配体亲和珠),以便为进一步的差异蛋白质组学实验选择最佳的分离步骤,重点是LMW蛋白质组(分子量低于40,000 Da)。实际上,其目的不是覆盖整个血浆/血清蛋白质组,而是富集潜在有趣的组织渗漏蛋白。对这三种方法的重现性,分馏后产生的SELDI-TOF-MS肽/蛋白质峰以及所提供的信息进行了评估。所研究的方法似乎可以提供补充信息,并具有良好的重现性(低于20%)。发现肽配体亲和珠可提供HMW蛋白质的有效耗竭和蛋白质/肽谱中的峰富集。

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