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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Studies on quantitative phosphopeptide analysis bymatrix-assisted laser desorption/ionization mass spectrometry without label, chromatography or calibration curves
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Studies on quantitative phosphopeptide analysis bymatrix-assisted laser desorption/ionization mass spectrometry without label, chromatography or calibration curves

机译:无需标签,色谱或校准曲线的基质辅助激光解吸/电离质谱分析磷酸肽的定量研究

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摘要

RATIONALE: Matrix-assisted laser desorption/ionization (MALDI) mass spectrometry combined with isotope labeling methods are effective for protein and peptide quantification, but limited in their multiplexing capacity, cost-effectiveness and dynamic range. This study investigates MALDI-MS-based quantification of peptide phosphorylation without labeling, and aims to overcome the shot-to-shot variability of MALDI using a mathematical transformation and extended data acquisition times. METHODS: A linear relationship between the reciprocal of phosphopeptide mole fraction and the reciprocal of phosphorylated-to-unphosphorylated signal ratio is derived, and evaluated experimentally using three separate phosphopeptide systems containing phosphorylated serine, threonine and tyrosine residues: mixtures of phosphopeptide and its des-phospho-analog with known stoichiometry measured by vacuum MALDI-linear ion trap mass spectrometry and fit to the linear model. The model is validated for quantifying in vitro phosphorylation assays with inhibition studies on Cdk2/cyclinA. RESULTS: Dynamic range of picomoles to femtomoles, good accuracy (deviations of 1.5-3.0% from expected values) and reproducibility (relative standard deviation (RSD) = 4.3-6.3%) are achieved. Inhibition of cyclin-dependent kinase phosphorylation by the classical inhibitors olomoucine and r-roscovitine was evaluated and IC50 values found to be in agreement with reported literature values. These results, achieved with single-point calibration, without isotope or chromatography, compare favorably to those arrived at using isotope dilution (p >0.5 for accuracy). CONCLUSIONS: The mathematical relationship derived here can be applied to a method that we term Double Reciprocal Isotope-free Phosphopeptide Quantification (DRIP-Q), as a strategy for quantification of in vitro phosphorylation assays, the first MALDI-based, isotope- and calibration curve-free method of its type. These results also pave the way for further systematic studies investigating the effect of peptide composition and experimental conditions on quantitative, label-free MALDI.
机译:理由:基质辅助激光解吸/电离(MALDI)质谱与同位素标记方法结合使用对蛋白质和肽段定量有效,但其复用能力,成本效益和动态范围受到限制。这项研究调查了基于MALDI-MS的无标记肽磷酸化的定量分析,旨在通过数学转换和延长数据采集时间来克服MALDI的逐次变化性。方法:得出磷酸肽摩尔分数的倒数与磷酸化与非磷酸化信号比的倒数之间的线性关系,并使用包含磷酸化丝氨酸,苏氨酸和酪氨酸残基的三个独立的磷酸肽系统进行实验评估:磷酸肽及其去氧核糖核酸的混合物通过真空MALDI-线性离子阱质谱法测量的化学计量比已知的磷酸酯类似物,并拟合线性模型。通过对Cdk2 / cyclinA的抑制研究,验证了该模型可用于量化体外磷酸化测定。结果:皮摩尔至飞摩尔的动态范围,良好的准确性(与预期值相差1.5-3.0%)和可重复性(相对标准偏差(RSD)= 4.3-6.3%)。评价了经典抑制剂olomoucine和r-roscovitine对细胞周期蛋白依赖性激酶磷酸化的抑制作用,IC50值与报道的文献值一致。与同位素稀释相比,采用单点校准无需同位素或色谱法即可获得这些结果(准确度p> 0.5)。结论:此处得出的数学关系式可以应用于我们称之为无双同位素倒数磷酸肽定量(DRIP-Q)的方法,作为一种定量体外磷酸化测定的策略,这是第一种基于MALDI的,同位素定标的方法这种类型的无曲线方法。这些结果也为进一步的系统研究铺平了道路,以研究肽组成和实验条件对定量无标记MALDI的影响。

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