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一维毛细管液相色谱分离与串联质谱联用揭示了微阵列规模上大肠杆菌的蛋白质组。

One-dimensional capillary liquid chromatographic separation coupled with tandem mass spectrometry unveils the Escherichia coli proteome on a microarray scale.

出版信息

Anal Chem. 2010 Apr 1;82(7):2616-20. doi: 10.1021/ac100343q.

Abstract

We successfully identified the proteome expressed in Escherichia coli (E. coli) cells on a microarray scale using one-dimensional capillary liquid chromatography-tandem mass spectrometry (LC-MS/MS) with a 350 cm long, 100 microm i. d., monolithic silica-C(18) capillary column. E. coli tryptic digest (4 microg) was injected onto the column, and a 41 h gradient was applied with a flow rate of 500 nL/min at less than 20 MPa. In total, 22,196 nonredundant tryptic peptides from 2602 proteins, including 830 membrane proteins, were identified from the E. coli cells (triplicate analysis), in which an equivalent number of genes was detected by transcriptome analysis. Approximately a 5-fold larger peak response on average was obtained in this system, compared with that obtained by conventional capillary LC-MS/MS analysis with a 15 cm long, 3 microm diameter C(18) silica particle-packed column. The higher response suggests that the influence of ionization suppression was drastically reduced by the high-efficiency separation on the long monolithic silica column coupled with the shallow gradient. Because this high-resolution system does not require any additional separation prior to LC-MS/MS, this "one-shot" proteomics approach can simplify the workflow of shotgun proteomics and minimize the sample amount, as well as reduce the total analysis time, despite the use of prolonged shallow gradient elution.

摘要

我们成功地使用一维毛细管液相色谱-串联质谱(LC-MS/MS),在微阵列规模上鉴定出大肠杆菌(E. coli)细胞中的蛋白质组,该系统使用的是长 350 厘米、内径 100 微米、整体式硅胶-C(18)毛细管柱。将 4 微克大肠杆菌酶解物注入柱中,以 500nL/min 的流速、小于 20MPa 的压力施加 41 小时梯度。从大肠杆菌细胞中鉴定出 2602 种蛋白质中的 22196 种非冗余酶解肽,包括 830 种膜蛋白(重复分析),其中转录组分析检测到相同数量的基因。与传统毛细管 LC-MS/MS 分析相比,该系统的峰响应平均增加了约 5 倍,传统毛细管 LC-MS/MS 分析使用的是长 15 厘米、3 微米直径的 C(18)硅胶颗粒填充柱。更高的响应表明,通过高效分离长整体式硅胶柱与浅梯度结合,大大降低了离子抑制的影响。由于该高分辨率系统在进行 LC-MS/MS 之前不需要任何额外的分离,因此这种“一击中的”蛋白质组学方法可以简化 shotgun 蛋白质组学的工作流程,减少样品量,以及尽管使用延长的浅梯度洗脱,但可以减少总分析时间。

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