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Comparison of alternative analytical techniques for the characterisation of the human serum proteome in HUPO Plasma Proteome Project

机译:HUPO血浆蛋白质组计划中用于表征人血清蛋白质组的替代分析技术的比较

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Based on the same HUPO reference specimen (Cl-serum) with the six proteins of highest abundance depleted by immunoaffinity chromatography, we have compared five proteomics approaches, which were (1) intact protein fractionation by anion-exchange chromatography followed by 2-DE-MALDI-TOF-MS/MS for protein identification (2-DE strategy); (2) intact protein fractionation by 2-D HPLC followed by tryptic digestion of each fraction and microcapillary RP-HPLC/microESI-MS/MS identification (protein 2-D HPLC fractionation strategy); (3) protein digestion followed by automated online microcapillary 2-D HPLC (strong cation-exchange chromatography (SCX)-RPC) with IT microESI-MS/MS; (online shotgun strategy); (4) same as (3) with the SCX step performed offline (offline shotgun strategy) and (5) same as (4) with the SCX fractions reanalysed by optimised nanoRP-HPLC-nanoESI-MS/MS (offline shotgun-nanospray strategy). All five approaches yielded complementary sets of protein identifications. The total number of unique proteins identified by each of these five approaches was (1) 78, (2) 179, (3) 131, (4) 224 and (5) 330 respectively. In all, 560 unique proteins were identified. One hundred and sixty-five proteins were identified through two or more peptides, which could be considered a high-confidence identification. Only 37 proteins were identified by all five approaches. The 2-DE approach yielded more information on the pI-altered isoforms of some serum proteins and the relative abundance of identified proteins. The protein prefractionation strategy slightly improved the capacity to detect proteins of lower abundance. Optimising the separation at the peptide level and improving the detection sensitivity of ESI-MS/MS were more effective than fractionation of intact proteins in increasing the total number of proteins identified. Overall, electrophoresis and chromatography, coupled respectively with MALDI-TOF/TOF-MS and ESI-MS/MS, identified complementary sets of serum proteins.
机译:基于相同的HUPO参考样品(Cl-血清),其中免疫亲和层析消耗了六种最高丰度的蛋白质,我们比较了五种蛋白质组学方法,即(1)阴离子交换层析然后2-DE-进行完整的蛋白质分离MALDI-TOF-MS / MS用于蛋白质鉴定(2-DE策略); (2)通过2-D HPLC进行完整的蛋白分级分离,然后对每个级分进行胰蛋白酶消化,并进行微毛细管RP-HPLC / microESI-MS / MS鉴定(蛋白2-D HPLC分级策略); (3)蛋白质消化,然后用IT microESI-MS / MS自动进行在线微毛细管二维HPLC(强阳离子交换色谱法(SCX)-RPC); (在线shot弹枪策略); (4)与(3)相同,离线执行SCX步骤(脱机shot弹枪策略),和(5)与(4)相同,其中通过优化的nanoRP-HPLC-nanoESI-MS / MS重新分析SCX馏分(脱机shot弹枪-纳米喷雾策略) )。所有这五种方法都产生了互补的蛋白质鉴定集。通过这五种方法鉴定出的独特蛋白质总数分别为(1)78,(2)179,(3)131,(4)224和(5)330。总共鉴定出560种独特的蛋白质。通过两个或多个肽段鉴定出165种蛋白质,可以认为是高可信度鉴定。所有五种方法仅鉴定出37种蛋白质。 2-DE方法提供了一些血清蛋白的pI改变同工型和已鉴定蛋白的相对丰度的更多信息。蛋白质预分馏策略略微提高了检测较低丰度蛋白质的能力。优化肽段分离和提高ESI-MS / MS的检测灵敏度比完整蛋白的分离更有效地增加了鉴定出的蛋白总数。总体而言,电泳和色谱法分别与MALDI-TOF / TOF-MS和ESI-MS / MS结合使用,可鉴定出血清蛋白的互补组。

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