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用于通过扩展自下而上质谱法进行蛋白质测序的芯片上介孔功能化磁性微球

On-Chip Mesoporous Functionalized Magnetic Microspheres for Protein Sequencing by Extended Bottom-up Mass Spectrometry.

作者信息

Gasilova Natalia, Srzentić Kristina, Qiao Liang, Liu Baohong, Beck Alain, Tsybin Yury O, Girault Hubert H

机构信息

Laboratory of Physical and Analytical Electrochemistry, EPFL Valais, Ecole Polytechnique Fédérale de Lausanne , 1951 Sion, Valais, Switzerland.

Biomolecular Mass Spectrometry Laboratory, Ecole Polytechnique Fédérale de Lausanne , 1015 Lausanne, Vaud, Switzerland.

出版信息

Anal Chem. 2016 Feb 2;88(3):1775-84. doi: 10.1021/acs.analchem.5b04045. Epub 2016 Jan 8.

Abstract

A limited amount and extreme concentration variability of proteomic-related samples require efficient analyte preconcentration and purification prior to the mass spectrometry (MS)-based analysis. Preferably, these steps should be coupled online with chosen fractionation and detection techniques for the minimization of the sample loss. To realize such sample pretreatment, herein, an on-chip solid-phase extraction-gradient elution-tandem mass spectrometry (SPE-GEMS/MS) is introduced. This technique combines in a microfluidic format online sample preconcentration/purification on SPE sorbent with further fractionation and MS/MS analysis. C8-functionalized mesoporous magnetic microspheres are chosen as a sorbent, spatially confined with an applied magnetic field. They ensure a selective enrichment and analysis of large hydrophobic peptides (2.5-7 kDa), matching the desired mass bin of the extended bottom-up proteomic (eBUP, 3-7 kDa) approach. Within less than 35 min and without additional sample purification, SPE-GEMS/MS provided 66.5% of protein sequence coverage from 75 fmol of BSA tryptic digest. Analysis of only 33 fmol of a single monoclonal antibody, digested with secreted aspartic protease 9 (Sap9) to large peptides, yielded 80% of its sequence coverage. A more complex equimolar mixture of six antibodies (55 fmol each), submitted to Sap9 proteolysis, was also successfully processed by SPE-GEMS/MS, resulting in 50-67% of the total antibody sequence coverage. Importantly, for all antibodies, unique peptides containing complementarity determining regions were detected for both heavy and light chains, leading to a correct identification of mixture components despite their high sequence homology. Moreover, SPE-GEMS/MS microchip and chosen magnetic sorbent are cost-effective and can be produced and operated in a disposable manner. Therefore, the present technique could be potentially suitable for a high throughput sequencing of monoclonal antibodies and rapid eBUP-based structural protein analysis, especially when only a limited sample amount is available.

摘要

蛋白质组学相关样品的量有限且浓度变化极大,因此在基于质谱(MS)的分析之前需要进行高效的分析物预浓缩和纯化。理想情况下,这些步骤应与选定的分级分离和检测技术在线联用,以最大程度减少样品损失。为实现这种样品预处理,本文介绍了一种芯片上固相萃取-梯度洗脱-串联质谱法(SPE-GEMS/MS)。该技术以微流控形式将SPE吸附剂上的在线样品预浓缩/纯化与进一步的分级分离和MS/MS分析相结合。选用C8功能化的介孔磁性微球作为吸附剂,并通过施加磁场将其空间限制。它们确保对大的疏水性肽(2.5-7 kDa)进行选择性富集和分析,与扩展的自下而上蛋白质组学(eBUP,3-7 kDa)方法所需的质量范围相匹配。在不到35分钟的时间内,且无需额外的样品纯化,SPE-GEMS/MS从75 fmol的牛血清白蛋白胰蛋白酶消化物中提供了66.5%的蛋白质序列覆盖率。仅分析33 fmol用分泌天冬氨酸蛋白酶9(Sap9)消化成大肽段的单克隆抗体,就获得了80%的序列覆盖率。由六种抗体(每种55 fmol)组成的更复杂等摩尔混合物,经Sap9蛋白酶解后,也成功通过SPE-GEMS/MS处理,产生了50-67%的总抗体序列覆盖率。重要的是,对于所有抗体,重链和轻链均检测到了包含互补决定区的独特肽段,尽管它们的序列同源性很高,但仍能正确鉴定混合物成分。此外,SPE-GEMS/MS微芯片和选定的磁性吸附剂具有成本效益,并且可以一次性生产和操作。因此,本技术可能潜在适用于单克隆抗体的高通量测序和基于eBUP的快速结构蛋白质分析,特别是在样品量有限的情况下。

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