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用于质谱分析的肽库微尖端反相液相色谱提取法的研究。

Examination of micro-tip reversed-phase liquid chromatographic extraction of peptide pools for mass spectrometric analysis.

作者信息

Erdjument-Bromage H, Lui M, Lacomis L, Grewal A, Annan R S, McNulty D E, Carr S A, Tempst P

机构信息

Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.

出版信息

J Chromatogr A. 1998 Nov 27;826(2):167-81. doi: 10.1016/s0021-9673(98)00705-5.

Abstract

Mass spectrometry occupies a central position in most current protein identification schemes. So-called 'mass fingerprinting' techniques rely on composite mass patterns of proteolytic fragments, or dissociation products thereof, to query databases. Keys to successful analysis of ever smaller amounts are sensitivity and complete spectral information, both of which depend for a large part on proper sample preparation. Clean-up and concentration of peptide mixtures over eppendorf gel loading tips filled with chromatographic media (i.e. 'micro-tips') are believed to be quite useful in this regard. We have studied quantitative and qualitative aspects of polypeptide extraction using these small manual devices. Optimization of sample volume and additives, micro-tip bed volume, and eluent composition and volume, all contribute to effective recovery (approximately 65-70%, on average). Improper digest conditions can, in fact, lead to far bigger losses, suggesting the need for at least trace amounts of Zwittergent 3-16. Of particular interest is our finding that partial fractionation, obtained by two-step micro-tip elution, generally results in more and better signals during subsequent mass analysis. Thus, by using optimized micro-tips, in combination with adequate sample handling and instrumentation, direct mass spectrometric identification can be routinely and successfully done in any resource facility type setting.

摘要

质谱在当前大多数蛋白质鉴定方案中占据核心地位。所谓的“质量指纹识别”技术依靠蛋白水解片段或其解离产物的复合质量模式来查询数据库。成功分析越来越少量样本的关键在于灵敏度和完整的光谱信息,而这两者在很大程度上都依赖于适当的样品制备。在装有色谱介质的艾本德凝胶上样吸头(即“微吸头”)上对肽混合物进行净化和浓缩,在这方面被认为非常有用。我们研究了使用这些小型手动装置进行多肽提取的定量和定性方面。样品体积和添加剂、微吸头床体积以及洗脱液组成和体积的优化,都有助于实现有效的回收率(平均约为65 - 70%)。事实上,消化条件不当会导致更大的损失,这表明至少需要痕量的两性离子去污剂3 - 16。我们特别感兴趣的发现是,通过两步微吸头洗脱获得的部分分级分离,通常会在后续质谱分析中产生更多且更好的信号。因此,通过使用优化的微吸头,结合适当的样品处理和仪器设备,在任何资源设施类型的环境中都可以常规且成功地进行直接质谱鉴定。

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