Orekhovich Institute of Biomedical Chemistry of Russian Academy of Sciences, Bld. 8, 10 Pogodinskaya Str., 119121 Moscow, Russian Federation.
Orekhovich Institute of Biomedical Chemistry of Russian Academy of Sciences, Bld. 8, 10 Pogodinskaya Str., 119121 Moscow, Russian Federation.
J Chromatogr B Analyt Technol Biomed Life Sci. 2018 Apr 15;1083:258-270. doi: 10.1016/j.jchromb.2018.01.017. Epub 2018 Jan 31.
The purpose of this study is to improve peptide signal identification in groups of extracted ion chromatograms (XICs) obtained with the liquid chromatography-selected reaction monitoring (LC-SRM) technique and a triple quadrupole mass spectrometer (QqQ) operating in one of the supported multiple reaction monitoring (MRM) modes. The imperfection of quadrupole mass analyzers causes ion interference, which impedes the identification of peptide signals as chromatographic peak groups in relevant retention time intervals. To investigate this problem in depth, the QqQ conversion of the eluate into XIC groups was considered as the consecutive transformations of the particles' abundances as the corresponding functions of retention time. In this study, the hypothesis that, during this conversion, the same chromatographic profile should be preserved as an implicit sign in each chromatographic peak of the signal was confirmed for peptides. To examine chromatographic profiles, continuous transformations of XIC groups were derived and implemented in srm2prot Express software (s2pe, http://msr.ibmc.msk.ru/s2pe). Because of ion interference, several peptide-like signals may appear in one XIC group. Therefore, these signals must be considered candidates for a targeted peptide's signal and should be resolved after identification. The theoretical investigation of intensity functions as XICs that are not distorted by noise produced three rules for Identifying Candidate Signals for a targeted Peptide (ICSP, http://msr.ibmc.msk.ru/ICSP) that constitute the proposed manual visual method. We theoretically and experimentally compared this method with the conventional semiempirical intuitive technique and found that the former significantly streamlines peptide signal identification and avoids typical errors.
本研究旨在改进液相色谱-选择反应监测(LC-SRM)技术和三重四极杆质谱(QqQ)在支持的多种反应监测(MRM)模式之一中运行时,从提取离子色谱图(XIC)组中提高肽信号的识别。四极杆质量分析仪的不完善性导致离子干扰,这阻碍了肽信号作为相关保留时间间隔中色谱峰组的识别。为了深入研究这个问题,将洗脱液的 QqQ 转换为 XIC 组被认为是粒子丰度作为相应保留时间函数的连续转换。在这项研究中,对于肽,假设在该转换过程中,相同的色谱轮廓应该作为信号中每个色谱峰的隐含特征得以保留。为了检查色谱轮廓,对 XIC 组进行了连续转换,并在 srm2prot Express 软件(s2pe,http://msr.ibmc.msk.ru/s2pe)中实现。由于离子干扰,一个 XIC 组中可能会出现几个类似肽的信号。因此,这些信号必须被视为目标肽信号的候选信号,并在鉴定后进行解析。对不受噪声干扰的强度函数作为 XIC 的理论研究产生了用于识别目标肽候选信号的三个规则(ICSP,http://msr.ibmc.msk.ru/ICSP),构成了所提出的手动可视化方法。我们从理论和实验上比较了这种方法与传统的半经验直观技术,发现前者显著简化了肽信号的识别并避免了典型的错误。