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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Increasing proteome coverage with offline RP HPLC coupled to online RP nanoLC-MS
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Increasing proteome coverage with offline RP HPLC coupled to online RP nanoLC-MS

机译:离线RP HPLC与在线RP nanoLC-MS结合可提高蛋白质组覆盖率

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Fractionation prior to mass spectrometry is an indispensable step in proteomics. In this paper we report the success of performing offline reversed phase high pressure liquid chromatography (HPLC) fractionation on a C18 2.0. mm × 150 mm column at the peptide level with microliter per minute flow rates prior to online nano-flow reversed phase liquid chromatography mass spectrometry (nanoLC-MS) using the well-studied fungus Saccharomyces cerevisiae. A C18 75μm × 150. mm column was used online and the online elution gradients for each fraction were adjusted in order to obtain well resolved separation. Comparing this method directly to only performing nanoLC-MS we observed a 61.6% increase in the number of identified proteins. At a 1% false discovery rate 1028 proteins were identified using two dimensions of RPLC versus 636 proteins identified in a single nano-flow separation. The majority of proteins identified by one dimension of nano-LC were present in the proteins identified in our two dimensional strategy. Although increasing analysis time, this non-orthogonal and facile pre-fractionation method affords a more comprehensive examination of the proteome.
机译:质谱分析之前的分级分离是蛋白质组学中必不可少的步骤。在本文中,我们报告了在C18 2.0上进行离线反相高压液相色谱(HPLC)分离的成功。毫米级×150毫米色谱柱,肽级水平,每分钟微升流速,然后使用经过深入研究的真菌酿酒酵母在线进行纳米流反相液相色谱质谱分析(nanoLC-MS)。在线使用C1875μm×150.mm色谱柱,并调整每个馏分的在线洗脱梯度,以实现良好分离的分离。直接将此方法与仅执行nanoLC-MS进行比较,我们发现鉴定出的蛋白质数量增加了61.6%。在1%的错误发现率下,使用RPLC的两个维度可识别1028个蛋白质,而在单个纳流分离中则可识别636个蛋白质。通过一维纳米LC鉴定的大多数蛋白质都存在于我们二维策略鉴定的蛋白质中。尽管增加了分析时间,但这种非正交且简便的预分级方法可对蛋白质组进行更全面的检查。

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