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利用肽保留时间的精确控制进行高度多重靶向蛋白质组学分析。

Highly multiplexed targeted proteomics using precise control of peptide retention time.

机构信息

Luxembourg Clinical Proteomics center (LCP), Centre de Recherche Public de la Santé, Strassen, Luxembourg.

出版信息

Proteomics. 2012 Apr;12(8):1122-33. doi: 10.1002/pmic.201100533.

Abstract

Large-scale proteomics applications using SRM analysis on triple quadrupole mass spectrometers present new challenges to LC-MS/MS experimental design. Despite the automation of building large-scale LC-SRM methods, the increased numbers of targeted peptides can compromise the balance between sensitivity and selectivity. To facilitate large target numbers, time-scheduled SRM transition acquisition is performed. Previously published results have demonstrated incorporation of a well-characterized set of synthetic peptides enabled chromatographic characterization of the elution profile for most endogenous peptides. We have extended this application of peptide trainer kits to not only build SRM methods but to facilitate real-time elution profile characterization that enables automated adjustment of the scheduled detection windows. Incorporation of dynamic retention time adjustments better facilitate targeted assays lasting several days without the need for constant supervision. This paper provides an overview of how the dynamic retention correction approach identifies and corrects for commonly observed LC variations. This adjustment dramatically improves robustness in targeted discovery experiments as well as routine quantification experiments.

摘要

使用三重四极杆质谱仪进行大规模蛋白质组学应用分析对 LC-MS/MS 实验设计提出了新的挑战。尽管大规模 LC-SRM 方法的自动化构建,目标肽数量的增加会影响灵敏度和选择性之间的平衡。为了便于实现大量目标物,进行了定时的 SRM 转换采集。先前发表的结果表明,一组经过良好表征的合成肽的纳入使大多数内源性肽的洗脱轮廓的色谱特性得以表征。我们已经将肽训练试剂盒的这种应用扩展到不仅构建 SRM 方法,而且还促进实时洗脱轮廓特征化,从而能够自动调整预定的检测窗口。动态保留时间调整的纳入更好地促进了持续数天的靶向测定,而无需持续监督。本文概述了动态保留时间校正方法如何识别和校正常见的 LC 变化。这种调整极大地提高了靶向发现实验以及常规定量实验的稳健性。

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