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蛋白质翻译后修饰异构体的绝对定量

Absolute quantitation of protein posttranslational modification isoform.

作者信息

Yang Zhu, Li Ning

机构信息

Division of Life Science, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China,

出版信息

Methods Mol Biol. 2015;1306:105-19. doi: 10.1007/978-1-4939-2648-0_8.

Abstract

Mass spectrometry has been widely applied in characterization and quantification of proteins from complex biological samples. Because the numbers of absolute amounts of proteins are needed in construction of mathematical models for molecular systems of various biological phenotypes and phenomena, a number of quantitative proteomic methods have been adopted to measure absolute quantities of proteins using mass spectrometry. The liquid chromatography-tandem mass spectrometry (LC-MS/MS) coupled with internal peptide standards, i.e., the stable isotope-coded peptide dilution series, which was originated from the field of analytical chemistry, becomes a widely applied method in absolute quantitative proteomics research. This approach provides more and more absolute protein quantitation results of high confidence. As quantitative study of posttranslational modification (PTM) that modulates the biological activity of proteins is crucial for biological science and each isoform may contribute a unique biological function, degradation, and/or subcellular location, the absolute quantitation of protein PTM isoforms has become more relevant to its biological significance. In order to obtain the absolute cellular amount of a PTM isoform of a protein accurately, impacts of protein fractionation, protein enrichment, and proteolytic digestion yield should be taken into consideration and those effects before differentially stable isotope-coded PTM peptide standards are spiked into sample peptides have to be corrected. Assisted with stable isotope-labeled peptide standards, the absolute quantitation of isoforms of posttranslationally modified protein (AQUIP) method takes all these factors into account and determines the absolute amount of a protein PTM isoform from the absolute amount of the protein of interest and the PTM occupancy at the site of the protein. The absolute amount of the protein of interest is inferred by quantifying both the absolute amounts of a few PTM-site-independent peptides in the total cellular protein and their peptide yields. The PTM occupancy determination is achieved by measuring the absolute amounts of both PTM and non-PTM peptides from the highly purified protein sample expressed in transgenic organisms or directly isolated from an organism using affinity purification. The absolute amount of each PTM isoform in the total cellular protein extract is finally calculated from these two variables. Following this approach, the ion intensities given by mass spectrometers are used to calculated the peptide amounts, from which the amounts of protein isoforms are then deduced. In this chapter, we describe the principles underlying the experimental design and procedures used in AQUIP method. This quantitation method basically employs stable isotope-labeled peptide standards and affinity purification from a tagged recombinant protein of interest. Other quantitation strategies and purification techniques related to this method are also discussed.

摘要

质谱分析法已广泛应用于复杂生物样品中蛋白质的表征和定量分析。由于构建各种生物表型和现象的分子系统数学模型需要蛋白质的绝对含量数据,因此已采用多种定量蛋白质组学方法,利用质谱分析法来测量蛋白质的绝对含量。液相色谱-串联质谱法(LC-MS/MS)结合内部肽标准品,即稳定同位素编码肽稀释系列,该方法源自分析化学领域,已成为绝对定量蛋白质组学研究中广泛应用的方法。这种方法提供了越来越多高可信度的绝对蛋白质定量结果。由于对调节蛋白质生物活性的翻译后修饰(PTM)进行定量研究对生物学至关重要,且每种异构体可能具有独特的生物学功能、降解和/或亚细胞定位,因此蛋白质PTM异构体的绝对定量与其生物学意义的相关性越来越高。为了准确获得蛋白质PTM异构体的绝对细胞含量,应考虑蛋白质分级分离、蛋白质富集和蛋白水解消化产率的影响,并且必须校正这些影响,然后再将差异稳定同位素编码的PTM肽标准品加入样品肽中。在稳定同位素标记肽标准品的辅助下,翻译后修饰蛋白质异构体绝对定量(AQUIP)方法考虑了所有这些因素,并根据目标蛋白质的绝对含量和蛋白质位点的PTM占有率来确定蛋白质PTM异构体的绝对含量。通过对总细胞蛋白质中一些与PTM位点无关的肽的绝对含量及其肽产率进行定量来推断目标蛋白质的绝对含量。通过测量转基因生物中表达的或使用亲和纯化从生物体中直接分离的高度纯化蛋白质样品中PTM和非PTM肽的绝对含量来确定PTM占有率。最终根据这两个变量计算总细胞蛋白质提取物中每种PTM异构体的绝对含量。按照这种方法,利用质谱仪给出的离子强度来计算肽的含量,进而推导出蛋白质异构体的含量。在本章中,我们描述了AQUIP方法实验设计和程序背后的原理。这种定量方法基本上采用稳定同位素标记肽标准品,并从标记的目标重组蛋白中进行亲和纯化。还讨论了与此方法相关的其他定量策略和纯化技术。

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