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用于蛋白质组液相色谱-串联质谱分析的肽段脱盐的离心微流控自动化技术。

Automation of peptide desalting for proteomic liquid chromatography - tandem mass spectrometry by centrifugal microfluidics.

作者信息

Klatt J-N, Dinh T J, Schilling O, Zengerle R, Schmidt F, Hutzenlaub T, Paust N

机构信息

Laboratory for MEMS Applications, IMTEK - Department of Microsystems Engineering, University of Freiburg, Georges-Koehler-Allee 103, Freiburg im Breisgau, Germany and Hahn-Schickard, Georges-Koehler-Allee 103, 79110 Freiburg, Germany.

Faculty of Biology, University of Freiburg, Schaenzle Str. 1, Freiburg, Germany and Institute for Surgical Pathology, Medical Center, Faculty of Medicine, University of Freiburg, Breisacher Str. 115A, Freiburg, Germany.

出版信息

Lab Chip. 2021 Jun 1;21(11):2255-2264. doi: 10.1039/d1lc00137j.

Abstract

For large-scale analysis of complex protein mixtures, liquid chromatography - tandem mass spectrometry (LC-MS/MS) has been proven to be one of the most versatile tools due to its high sensitivity and ability to both identify and quantify thousands of proteins in a single measurement. Sample preparation typically comprises site-specific cleavage of proteins into peptides, followed by desalting and concomitant peptide enrichment, which is commonly performed by solid phase extraction. Desalting workflows may include multiple liquid handling steps and are thus error prone and labour intensive. To improve the reproducibility of sample preparation for low amounts of protein, we present a centrifugal microfluidic disk that automates all liquid handling steps required for peptide desalting by solid phase extraction (DesaltingDisk). Microfluidic implementation was enabled by a novel centrifugal microfluidic dosing on demand structure that enabled mapping multiple washing steps onto a microfluidic disk. Evaluation of the microfluidic disk was performed by LC-MS/MS analysis of tryptic HEK-293 eukaryotic cell peptide mixtures desalted either using the microfluidic disk or a manual workflow. A comparable number of peptides were identified in the disk and manual set with 19 775 and 20 212 identifications, respectively. For a core set of 10 444 peptides that could be quantified in all injections, intensity coefficients of variation were calculated based on label-free quantitation intensities. The disk set featured smaller variability with a median CV of 9.3% compared to the median CV of 12.6% for the manual approach. Intensity CVs on protein level were lowered from 5.8% to 4.2% when using the LabDisk. Interday reproducibility for both workflows was assessed by LC-SRM/MS analysis of samples that were spiked with 11 synthetic peptides of varying hydrophobicity. Except for the most hydrophilic and hydrophobic peptides, the average CV was lowered to 3.6% for the samples processed with the disk compared to 7.2% for the manual workflow. The presented centrifugal microfluidic DesaltingDisk demonstrates the potential to improve reproducibility in the sample preparation workflow for proteomic mass spectrometry, especially for application with limited amount of sample material.

摘要

对于复杂蛋白质混合物的大规模分析,液相色谱-串联质谱(LC-MS/MS)因其高灵敏度以及能够在单次测量中鉴定和定量数千种蛋白质的能力,已被证明是最通用的工具之一。样品制备通常包括将蛋白质进行位点特异性切割成肽段,然后进行脱盐以及伴随的肽段富集,这通常通过固相萃取来完成。脱盐工作流程可能包括多个液体处理步骤,因此容易出错且劳动强度大。为了提高低蛋白量样品制备的重现性,我们展示了一种离心微流控盘,它能自动完成固相萃取肽段脱盐所需的所有液体处理步骤(脱盐盘)。微流控的实现得益于一种新型的按需离心微流控加样结构,该结构能将多个洗涤步骤映射到微流控盘上。通过对使用微流控盘或手动工作流程脱盐的胰蛋白酶消化的HEK-293真核细胞肽混合物进行LC-MS/MS分析,对微流控盘进行了评估。在微流控盘组和手动组中分别鉴定出了相当数量的肽段,分别为19775个和20212个。对于在所有进样中都能定量的10444个核心肽段集,基于无标记定量强度计算了强度变异系数。与手动方法的中位数CV为12.6%相比,微流控盘组的变异较小,中位数CV为9.3%。使用脱盐盘时,蛋白质水平的强度CV从5.8%降至4.2%。通过对添加了11种不同疏水性合成肽的样品进行LC-SRM/MS分析,评估了两种工作流程的日间重现性。除了最亲水和最疏水的肽段外,使用脱盐盘处理的样品的平均CV降至3.6%,而手动工作流程的平均CV为7.2%。所展示的离心微流控脱盐盘证明了在蛋白质组质谱分析的样品制备工作流程中提高重现性的潜力,特别是对于样品量有限的应用。

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