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Automated integration of monolith-based protein separation with on-plate digestion for mass spectrometric analysis of esophageal adenocarcinoma human epithelial samples

机译:单层蛋白质分离的自动整合与板材消化,用于食管腺癌人上皮样品的质谱分析

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摘要

A unique approach of automating the integration of monolithic capillary HPLC-based protein separation and on-plate digestion for subsequent MALDI-MS analysis has been developed. All liquid-handling procedures were performed using a robotic module. This automated high-throughput method minimizes the amount of time and extensive labor required for traditional in-solution digestion followed by exhaustive sample cleanup and analysis. Also, precise positioning of the droplet from the capillary HPLC separation onto the MALDI plate allows for preconcentration effects of analytes for improved sensitivity. Proteins from primary esophageal Barrett's adenocarcinoma tissue were prefractionated by chromatofocusing and analyzed successfully by this automated configuration, obtaining rapid protein identifications through PMF and sequencing analyses with high sequence coverage. Additionally, intact protein molecular weight values were obtained as a means to further confirm protein identification and also to identify potential sequence modifications of proteins. This simple and rapid method is a highly versatile and robust approach for the analysis of complex proteomes.
机译:已经开发出独特的自动化方法,其进行了整合基于整体毛细管高HPLC的蛋白质分离和随后的MALDI-MS分析的分析。使用机器人模块进行所有液体处理程序。这种自动化的高通量方法可最大限度地减少传统溶液消化所需的时间和广泛的劳动,然后是详尽的样品清理和分析。此外,将液滴从毛细管HPLC分离的精确定位在MALDI板上允许分析物的预浓缩效应改善敏感性。通过染色体焦,通过​​染色体焦,通过​​染色体焦,通过​​染色体分析,通过这种自动化构型分析,通过PMF获得快速蛋白质鉴定和具有高序列覆盖的测序分析来分析。另外,获得完整的蛋白质分子量值作为进一步证实蛋白质鉴定的方法,也可以鉴定蛋白质的潜在序列修饰。这种简单且快速的方法是分析复杂蛋白质的高度通用和稳健的方法。

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