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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Precision profiling and identification of human serum peptides using Fourier transform ion cyclotron resonance mass spectrometry
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Precision profiling and identification of human serum peptides using Fourier transform ion cyclotron resonance mass spectrometry

机译:傅里叶变换离子回旋共振质谱法精确测定和鉴定人血清肽

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摘要

Many biomarker discovery studies are based on matrix-assisted laser desorption/ionisation (MALDI) peptide profiles. In this study, 96 human serum samples were analysed on a Bruker solariX~(TM) MALDI Fourier transform ion cyclotron resonance (FTICR) system equipped with a 15 tesla magnet. Isotopically resolved peptides were observed in ultrahigh resolution FTICR profiles up to m/z 6500 with mass measurement errors (MMEs) of previously identified peptides at a sub-ppm level. For comparison with our previous platform for peptide profile mass analysis (i.e. Ultraflex II) the corresponding time-of-flight (TOF) spectra were obtained with isotopically resolved peptides up to m/z 3500. The FTICR and TOF systems performed rather similar with respect to the repeatability of the signal intensities. However, the mass measurement precision improved at least 10-fold in ultrahigh resolution data and thus simplified spectral alignment necessary for robust and quantitatively precise comparisons of profiles in large-scale clinical studies. From each single MALDI-FTICR spectrum an m/z-list was obtained with sub-ppm precision for all different species, which is beneficial for identification purposes and interlaboratory comparisons. Furthermore, the FTICR system allowed new peptide identifications from collision-induced dissociation (CID) spectra using direct infusion of reversed-phase (RP) C_(18)-fractionated serum samples on an electrospray ionisation (ESI) source.
机译:许多生物标记物发现研究都是基于基质辅助的激光解吸/电离(MALDI)肽谱。在这项研究中,在配备有15特斯拉磁体的Bruker solari™MALDI傅立叶变换离子回旋共振(FTICR)系统上分析了96个人类血清样品。在高达m / z 6500的超高分辨率FTICR谱图中观察到了同位素分辨的肽,先前鉴定出的肽的质量测量误差(MME)处于亚ppm级。为了与我们以前的肽谱质量分析平台(即Ultraflex II)进行比较,使用同位素分辨的肽(高达m / z 3500)获得了相应的飞行时间(TOF)谱图。FTICR和TOF系统在性能方面相当相似信号强度的可重复性。但是,在超高分辨率数据中,质量测量精度提高了至少10倍,因此简化了在大规模临床研究中对图谱进行可靠且定量精确比较所需的光谱对准。从每个单独的MALDI-FTICR光谱中,可以得到所有不同物种的亚ppm精度的m / z列表,这对于鉴定目的和实验室间比较是有益的。此外,FTICR系统允许将反相(RP)C_(18)分离的血清样品直接注入电喷雾电离(ESI)源,从碰撞诱导的解离(CID)光谱中鉴定新的肽。

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