Mohammed Yassene, Pan Jingxi, Zhang Suping, Han Jun, Borchers Christoph H
University of Victoria - Genome British Columbia Proteomics Centre, Victoria, Canada.
Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, the Netherlands.
Proteomics Clin Appl. 2018 Mar;12(2). doi: 10.1002/prca.201600180. Epub 2017 Oct 25.
Targeted proteomics using MRM with stable-isotope-labeled internal-standard (SIS) peptides is the current method of choice for protein quantitation in complex biological matrices. Better quantitation can be achieved with the internal standard-addition method, where successive increments of synthesized natural form (NAT) of the endogenous analyte are added to each sample, a response curve is generated, and the endogenous concentration is determined at the x-intercept. Internal NAT-addition, however, requires multiple analyses of each sample, resulting in increased sample consumption and analysis time.
To compare the following three methods, an MRM assay for 34 high-to-moderate abundance human plasma proteins is used: classical internal SIS-addition, internal NAT-addition, and external NAT-addition-generated in buffer using NAT and SIS peptides. Using endogenous-free chicken plasma, the accuracy is also evaluated.
The internal NAT-addition outperforms the other two in precision and accuracy. However, the curves derived by internal vs. external NAT-addition differ by only ≈3.8% in slope, providing comparable accuracies and precision with good CV values.
While the internal NAT-addition method may be "ideal", this new external NAT-addition can be used to determine the concentration of high-to-moderate abundance endogenous plasma proteins, providing a robust and cost-effective alternative for clinical analyses or other high-throughput applications.
使用带有稳定同位素标记内标(SIS)肽段的多反应监测(MRM)进行靶向蛋白质组学分析,是目前在复杂生物基质中进行蛋白质定量的首选方法。采用内标添加法可实现更好的定量,即向内源性分析物的每个样本中逐次添加内源性分析物的合成天然形式(NAT)的增量,生成响应曲线,并在x轴截距处确定内源性浓度。然而,内部NAT添加需要对每个样本进行多次分析,导致样本消耗和分析时间增加。
为比较以下三种方法,采用针对34种高至中等丰度人血浆蛋白的MRM分析方法:经典内部SIS添加法、内部NAT添加法以及使用NAT和SIS肽段在缓冲液中生成的外部NAT添加法。使用无内源性物质的鸡血浆评估准确性。
内部NAT添加法在精密度和准确性方面优于其他两种方法。然而,内部与外部NAT添加法得出的曲线斜率仅相差约3.8%,在CV值良好的情况下提供了相当的准确性和精密度。
虽然内部NAT添加法可能是“理想”方法,但这种新的外部NAT添加法可用于测定高至中等丰度内源性血浆蛋白的浓度,为临床分析或其他高通量应用提供了一种强大且具有成本效益的替代方法。