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Simplified and Efficient Quantification of Low-abundance Proteins at Very High Multiplex via Targeted Mass Spectrometry

机译:通过目标质谱法以非常高的多重性对低丰度蛋白质进行了简化而高效的定量

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摘要

Liquid chromatography–multiple reaction monitoring mass spectrometry (LC-MRM-MS) of plasma that has been depleted of abundant proteins and fractionated at the peptide level into six to eight fractions is a proven method for quantifying proteins present at low nanogram-per-milliliter levels. A drawback of fraction-MRM is the increased analysis time due to the generation of multiple fractions per biological sample. We now report that the use of heated, long, fused silica columns (>30 cm) packed with 1.9 μm of packing material can reduce or eliminate the need for fractionation prior to LC-MRM-MS without a significant loss of sensitivity or precision relative to fraction-MRM. We empirically determined the optimal column length, temperature, gradient duration, and sample load for such assays and used these conditions to study detection sensitivity and assay precision. In addition to increased peak capacity, longer columns packed with smaller beads tolerated a 4- to 6-fold increase in analyte load without a loss of robustness or reproducibility. The longer columns also provided a 4-fold improvement in median limit-of-quantitation values with increased assay precision relative to the standard 12 cm columns packed with 3 μm material. Overall, the optimized chromatography provided an approximately 3-fold increase in analysis throughput with excellent robustness and less than a 2-fold reduction in quantitative sensitivity relative to fraction-MRM. The value of the system for increased multiplexing was demonstrated by the ability to configure an 800-plex MRM-MS assay, run in a single analysis, comprising 2400 transitions with retention time scheduling to monitor 400 unlabeled and heavy labeled peptide pairs.
机译:血浆中的液相色谱-多重反应监测质谱法(LC-MRM-MS)已耗尽,已在蛋白质水平上将其分离成六到八个馏分,这是定量分析低毫微克每毫升蛋白质的可靠方法水平。级分MRM的一个缺点是由于每个生物样品产生多个级分而增加了分析时间。我们现在报告,使用填充有1.9μm填充材料的加热的长熔融石英柱(> 30 cm)可以减少或消除在LC-MRM-MS之前进行分馏的需求,而不会显着降低灵敏度或相对精密度到MRM分数。我们凭经验确定了此类测定的最佳色谱柱长度,温度,梯度持续时间和样品负载,并使用这些条件研究了检测灵敏度和测定精度。除了提高峰容量外,更长的色谱柱还装有较小的微珠,可承受4到6倍的分析物上样量增加,而不会损失坚固性或再现性。相对于装有3μm材料的标准12 cm色谱柱,更长的色谱柱还使定量限的中值提高了4倍,并提高了测定精度。总体而言,优化的色谱相对于馏分MRM,分析通量提高了约3倍,具有出色的鲁棒性,定量灵敏度降低了不到2倍。通过配置可在单个分析中运行的800多重MRM-MS分析(包括2400个转换和保留时间安排以监控400个未标记和重标记的肽对)的能力,证明了该系统对提高多路复用的价值。

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