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首页> 外文期刊>Journal of proteomics >Enhanced sensitivity and multiplexing with 2D LC/MRM-MS and labeled standards for deeper and more comprehensive protein quantitation
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Enhanced sensitivity and multiplexing with 2D LC/MRM-MS and labeled standards for deeper and more comprehensive protein quantitation

机译:通过2D LC / MRM-MS和标记的标准品增强了灵敏度并实现了多路复用,可进行更深入,更全面的蛋白质定量

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Mass spectrometry (MS)-based protein quantitation is increasingly being employed to verify candidate protein biomarkers. Multiple or selected reaction monitoring-mass spectrometry (MRM-MS or SRM-MS) with isotopically labeled internal standards has proven to be a successful approach in that regard, but has yet to reach its full potential in terms of multiplexing and sensitivity. Here, we report the development of a new MRM method for the quantitation of 253 disease-associated proteins (represented by 625 interference-free peptides) in 13 LC fractions. This 2D RPLC/MRM-MS approach extends the depth and breadth of the assay by 2 orders of magnitude over pre-fractionation-free assays, with 31 proteins below 10 ng/mL and 41 proteins above 10 ng/mL now quantifiable. Standard flow rates are used in both chromatographic dimensions, and up-front depletion or antibody-based enrichment is not required. The LC separations utilize high and low pH conditions, with the former employing an ammonium hydroxide-based eluent, instead of the conventional ammonium formate, resulting in improved LC column lifetime and performance. The high sensitivity (determined concentration range: 15 mg/mL to 452 pg/mL) and robustness afforded by this method makes the full MRM panel, or subsets thereof, useful for the verification of disease-associated plasma protein biomarkers in patient samples.
机译:基于质谱(MS)的蛋白质定量越来越多地用于验证候选蛋白质生物标记。具有同位素标记内标的多重或选定的反应监测质谱法(MRM-MS或SRM-MS)在这方面已被证明是一种成功的方法,但在复用和灵敏度方面尚未发挥其全部潜力。在这里,我们报告了一种新的MRM方法的发展,该方法可定量分析13个LC馏分中的253种与疾病相关的蛋白质(以625种无干扰肽表示)。这种2D RPLC / MRM-MS方法比无分级分离的检测方法的检测深度和广度扩大了2个数量级,现在可以定量分析10 ng / mL以下的31种蛋白质和10 ng / mL以上的41种蛋白质。在两个色谱尺寸上都使用标准流速,不需要预先消耗或基于抗体的富集。液相色谱分离利用高和低pH条件,前者采用基于氢氧化铵的洗脱液代替常规的甲酸铵,从而提高了液相色谱柱的使用寿命和性能。此方法提供的高灵敏度(确定的浓度范围:15 mg / mL至452 pg / mL)和稳健性,使得完整的MRM组合或其子集可用于验证患者样品中与疾病相关的血浆蛋白生物标志物。

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