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采用表面多孔毛细管反相液相色谱-质谱法对复杂蛋白质混合物进行灵敏且可重现的完整质量分析。

Sensitive and reproducible intact mass analysis of complex protein mixtures with superficially porous capillary reversed-phase liquid chromatography mass spectrometry.

机构信息

UT Southwestern Medical Center, Dallas, Texas 75390-9185, United States.

出版信息

Anal Chem. 2011 Dec 15;83(24):9586-92. doi: 10.1021/ac202339x. Epub 2011 Nov 15.

Abstract

The compatibility of superficially porous (SP) resin for label-free intact protein analysis with online capillary LC/MS is demonstrated to give improved chromatographic resolution, sensitivity, and reproducibility. The robustness of the platform was measured against several samples of varying complexity and sample loading amount. The results indicate that capillary SP columns provide high loading capacities and that ∼6 s chromatographic peak widths are typical for standard proteins in simple mixtures and proteins isolated from cell and tissue lysates. Subfemtomole detection limits for standard proteins were consistently observed, with the lowest levels at 12 amol for ubiquitin. The analysis of total heart homogenates shows that capillary SP columns provide theoretical peak capacity of 106 protein forms with 30 min total analysis time and enabled detection of proteins from complex mixtures with a single high-resolution scan. The SPLC/MS platform also detected 343 protein forms from two HeLa acid extract replicate analyses that consumed 5 × 10(4) cells and 30 min analysis time, each. Comparison of all the species observed in each HeLa replicate showed 90% overlap (309 forms) with a Pearson correlation coefficient of 89.9% for the common forms observed in the replicates. Efficient acid extract of 1 × 10(4) HeLa cells allowed reproducible detection of common modification states and members from all five of the histone families and demonstrated that capillary SPLC/MS supports reproducible label-free profiling of histones in <15 min total analysis time. The data presented demonstrate that a capillary LC/MS platform utilizing superficially porous stationary phase and a LTQ-Orbitrap FT-MS is fast, sensitive, and reproducible for intact protein profiling from small tissue and cell amounts.

摘要

本文展示了表面多孔(SP)树脂与在线毛细管 LC/MS 用于非标记完整蛋白质分析的兼容性,可提高色谱分辨率、灵敏度和重现性。该平台的稳健性通过几种不同复杂性和样品加载量的样品进行了测量。结果表明,毛细管 SP 柱提供了高的加载能力,并且标准蛋白质在简单混合物和细胞和组织裂解物中分离的蛋白质的典型色谱峰宽约为 6 秒。对于标准蛋白质,始终观察到亚飞摩尔检测限,对于泛素的最低水平为 12 飞摩尔。总心脏匀浆的分析表明,毛细管 SP 柱在 30 分钟的总分析时间内提供了 106 种蛋白质形式的理论峰容量,并能够通过单次高分辨率扫描检测复杂混合物中的蛋白质。SPLC/MS 平台还从两个 HeLa 酸提取物重复分析中检测到 343 种蛋白质形式,每个分析消耗 5×10(4)个细胞和 30 分钟的分析时间。对每个 HeLa 重复观察到的所有物种的比较显示 90%的重叠(309 种形式),重复中观察到的常见形式的 Pearson 相关系数为 89.9%。对 1×10(4)个 HeLa 细胞的有效酸提取允许重现性地检测常见的修饰状态和来自所有五个组蛋白家族的成员,并证明毛细管 SPLC/MS 支持在 <15 分钟的总分析时间内对组蛋白进行可重现的非标记分析。所呈现的数据表明,利用表面多孔固定相和 LTQ-Orbitrap FT-MS 的毛细管 LC/MS 平台对于从小组织和细胞量中进行完整蛋白质分析是快速、灵敏和可重现的。

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