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首页> 外文期刊>Analytical chemistry >Membrane-Assisted Isoelectric Focusing Device As a Micropreparative Fractionator for Two-Dimensional Shotgun Proteomics
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Membrane-Assisted Isoelectric Focusing Device As a Micropreparative Fractionator for Two-Dimensional Shotgun Proteomics

机译:膜辅助等电聚焦装置作为二维Shot弹枪蛋白质组学的微制备分馏器

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Recently, we introduced an online multijunction capillary isoelectric focusing (OMJ-CIEF) fractionator to fractionate proteins and peptides in electrospray-friendly solution. In this follow-up study, the original configuration of the fractionator was modified to improve the resolving power and reproducibility of separation. The major improvements include stabilization of the electrical current through the device using a voltage divider and stepwise elution of peptide zones in conjunction with the repeated refocusing of remaining peptides. Also, a novel algorithm was developed to calculate more accurately the pI values of peptides identified from experimental data. The standard deviation of calculated pI values for unmodified peptides from the theoretically predicted pI values was on average 0.21 pH units, which is more accurate than in standard-resolution gel-based methods. In order to characterize the analytical performance of the improved device, it was applied for the pI fractionation of yeast proteome digest into 18 fractions, with the collected fractions being analyzed by reverse-phase liquid chromatography coupled with tandem mass spectrometry. Approximately 37% of 20047 identified peptides were detected in only one fraction and 27% - in two fractions. On average, every peptide was found in 2.4 fractions. These results strongly indicate the suitability of the improved device as a first dimension of separation in multidimensional shotgun proteomics analysis, with a potential for fully automated workflow.
机译:最近,我们推出了在线多结毛细管等电聚焦(OMJ-CIEF)分馏器,用于在电喷雾友好型溶液中分离蛋白质和多肽。在此后续研究中,对分馏塔的原始配置进行了改进,以提高分离能力和重现性。主要的改进包括使用分压器稳定通过设备的电流,并逐步洗脱肽区,以及重复重新聚焦剩余的肽。此外,还开发了一种新颖的算法,可以更准确地计算从实验数据中识别出的肽的pI值。计算得出的未修饰肽的pI值与理论上预测的pI值的标准偏差平均为0.21 pH单位,这比基于标准分辨率凝胶的方法更准确。为了表征改进装置的分析性能,将其用于酵母蛋白质组消化物的pI分馏,分为18个馏分,并通过反相液相色谱和串联质谱法对收集的馏分进行分析。仅在一个馏分中检测到约2004%鉴定的肽中有37%,在两个馏分中检测到了27%。平均而言,每个肽的含量为2.4。这些结果有力地表明,改进的设备适合作为多维shot弹枪蛋白质组学分析中的第一个分离维度,具有实现全自动工作流程的潜力。

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