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采用内标进行脑脊液候选蛋白质生物标志物定量的多重MRM技术

Multiplexed MRM with Internal Standards for Cerebrospinal Fluid Candidate Protein Biomarker Quantitation.

作者信息

Percy Andrew J, Yang Juncong, Chambers Andrew G, Simon Romain, Hardie Darryl B, Borchers Christoph H

机构信息

University of Victoria - Genome British Columbia Proteomics Centre, University of Victoria , Vancouver Island Technology Park, 3101-4464 Markham Street, Victoria, BC V8Z 7X8, Canada.

Department of Biochemistry and Microbiology, University of Victoria , Petch Building Room 207, 3800 Finnerty Road, Victoria, BC V8P 5C2, Canada.

出版信息

J Proteome Res. 2014 Aug 1;13(8):3733-3747. doi: 10.1021/pr500317d. Epub 2014 Jun 30.

Abstract

Multiplexed quantitation is essential for discovering, verifying, and validating biomarkers for risk stratification, disease prognostication, and therapeutic monitoring. The most promising strategy for quantifying unverified protein biomarkers in biofluids relies on selected/multiple reaction monitoring (SRM or MRM) technology with isotopically labeled standards employed within a bottom-up proteomic workflow. Since cerebrospinal fluid (CSF) is an important fluid for studying central nervous system (CNS) related diseases, we sought to develop a rapid, antibody- and fractionation-free MRM-based approach with a complex mixture of peptide standards to quantify a highly multiplexed panel of candidate protein biomarkers in human CSF. Development involved peptide transition optimization, denaturation/digestion protocol evaluation, transition interference screening, and protein quantitation via peptide standard curves. The final method exhibited excellent reproducibility (average coefficient of variation of <1% for retention time and <6% for signal) and breadth of quantitation (130 proteins from 311 interference-free peptides) in a single 43-min run. These proteins are of high-to-low abundance with determined concentrations from 118 μg/mL (serum albumin) to 550 pg/mL (apolipoprotein C-I). Overall, the method consists of the most highly multiplexed and broadest panel of candidate protein biomarkers in human CSF reported thus far and is well suited for subsequent verification studies on patient samples.

摘要

多重定量对于发现、验证和确认用于风险分层、疾病预后评估和治疗监测的生物标志物至关重要。在生物流体中对未经证实的蛋白质生物标志物进行定量的最有前景的策略依赖于在自下而上的蛋白质组学工作流程中使用同位素标记标准品的选择/多反应监测(SRM或MRM)技术。由于脑脊液(CSF)是研究中枢神经系统(CNS)相关疾病的重要流体,我们试图开发一种基于MRM的快速、无需抗体和分离的方法,使用复杂的肽标准品混合物来定量人脑脊液中一组高度多重的候选蛋白质生物标志物。开发过程包括肽跃迁优化、变性/消化方案评估、跃迁干扰筛选以及通过肽标准曲线进行蛋白质定量。最终方法在单次43分钟运行中表现出出色的重现性(保留时间的平均变异系数<1%,信号的平均变异系数<6%)和定量范围(来自311个无干扰肽的130种蛋白质)。这些蛋白质丰度从高到低,测定浓度范围为118μg/mL(血清白蛋白)至550pg/mL(载脂蛋白C-I)。总体而言,该方法包含了迄今为止报道的人脑脊液中候选蛋白质生物标志物最具多重性和最广泛的组合,非常适合对患者样本进行后续验证研究。

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