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使用具有电喷雾电离质谱的极低流速多孔硅胶整体式液相色谱柱进行更灵敏和定量的蛋白质组学测量。

More sensitive and quantitative proteomic measurements using very low flow rate porous silica monolithic LC columns with electrospray ionization-mass spectrometry.

作者信息

Luo Quanzhou, Tang Keqi, Yang Feng, Elias Ayesha, Shen Yufeng, Moore Ronald J, Zhao Rui, Hixson Kim K, Rossie Sandra S, Smith Richard D

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Proteome Res. 2006 May;5(5):1091-7. doi: 10.1021/pr050424y.

DOI:10.1021/pr050424y
PMID:16674098
Abstract

The sensitivity of proteomics measurements using liquid chromatography (LC) separations interfaced with electrospray ionization-mass spectrometry (ESI-MS) improves approximately inversely with liquid flow rate (for the columns having the same separation efficiency, linear velocity, and porosity), making attractive the use of smaller inner diameter LC columns. We report the development and initial application of 10 microm i.d. silica-based monolithic LC columns providing more sensitive proteomics measurements. A 50-microm-i.d. micro solid-phase extraction precolumn was used for ease of sample injection and cleanup prior to the reversed-phase LC separation, enabling the sample volume loading speed to be increased by approximately 50-fold. Greater than 10-fold improvement in sensitivity was obtained compared to analyses using more conventional capillary LC, enabling e.g. the identification of >5000 different peptides by MS/MS from 100-ng of a Shewanella oneidensis tryptic digest using an ion trap MS. The low nL/min LC flow rates provide more uniform responses for different peptides, and provided improved quantitative measurements compared to conventional separation systems without the use of internal standards or isotopic labeling. The improved sensitivity allowed LC-MS measurements of immunopurified protein phosphatase 5 that were in good agreement with quantitative Western blot analyses.

摘要

使用与电喷雾电离质谱(ESI-MS)联用的液相色谱(LC)分离进行蛋白质组学测量的灵敏度,大约与液体流速成反比(对于具有相同分离效率、线速度和孔隙率的色谱柱),这使得使用更小内径的LC色谱柱颇具吸引力。我们报告了内径为10微米的基于硅胶的整体式LC色谱柱的开发及其初步应用,该色谱柱可实现更灵敏的蛋白质组学测量。一个内径为50微米的微型固相萃取预柱用于在反相LC分离之前便于进样和净化,使样品上样速度提高了约50倍。与使用更传统的毛细管LC进行的分析相比,灵敏度提高了10倍以上,例如使用离子阱质谱从100纳克的希瓦氏菌胰蛋白酶消化物中通过MS/MS鉴定出>5000种不同的肽段。低纳升/分钟的LC流速为不同的肽段提供了更均匀的响应,并且与不使用内标或同位素标记的传统分离系统相比,提供了改进的定量测量。提高的灵敏度使得对免疫纯化的蛋白磷酸酶5进行LC-MS测量,其结果与定量蛋白质印迹分析结果高度一致。

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