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High-Speed Data Reduction, Feature Detection, and MS/MS Spectrum Quality Assessment of Shotgun Proteomics Data Sets Using High-Resolution Mass Spectrometry

机译:使用高分辨率质谱法对Shot弹枪蛋白质组学数据集进行高速数据归约,特征检测和MS / MS频谱质量评估

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Advances in Fourier transform mass spectrometry havemade the acquisition of high-resolution and accurate mass measurements routine on a chromatographic time scale. Here we report an algorithm, Hardklor, for the rapid and robust analysis of high-resolution mass spectra acquired in shotgun proteomics experiments. Our algorithm is demonstrated in the analysis of an Escherichia coli enriched membrane fraction. The mass spectrometry data of the respective peptides are acquired by microcapillary HPLC on an LTQ-orbitrap mass spectrometer with data-dependent acquisition of MS/MS spectra. Hardklor detects 211,272 total peptide isotope distributions over a 2-h analysis (75-min gradient) in only a small fraction of the time required to acquire the data. From these data there are 13 665 distinct, chromatographically persistent peptide isotope distributions. Hardklor is also used to assess the quality of the product ion spectra and finds that more than 11.2percent of the MS/MS spectra are composed of fragment ions from multiple different molecular species. Additionally, a method is reported that enzymatically labels N-linked glycosylation sites on proteins, creating a unique isotope signature that can be detected with Hard-klor. Using the protein invertase, Hardklor identifies ~(18)O-labeled peptide isotope distributions of four glycosylation sites. The speed and robustness of the algorithm create a versatile tool that can be used in many different areas of mass spectrometry data analysis.
机译:傅里叶变换质谱技术的进步使得在色谱时间尺度上获得了高分辨率和精确的质量测量程序成为可能。在这里,我们报告一种算法,用于对散弹枪蛋白质组学实验中获得的高分辨率质谱进行快速而稳健的分析。我们的算法在富含大肠杆菌的膜级分的分析中得到了证明。各个肽段的质谱数据是通过LTQ-orbitrap质谱仪上的微毛细管HPLC采集的,其中数据依赖于MS / MS谱图的采集。 Hardklor在2小时分析(75分钟梯度)中仅需获取数据所需时间的一小部分即可检测到211,272个总肽同位素分布。根据这些数据,有13 665个不同的色谱持久性肽同位素分布。 Hardklor还用于评估产物离子质谱图的质量,发现超过11.2%的MS / MS谱图由来自多个不同分子种类的碎片离子组成。此外,据报道,有一种方法用酶标记蛋白质上的N-连接糖基化位点,从而形成可以用Hard-klor检测到的独特同位素特征。使用蛋白质转化酶,Hardklor可以识别四个糖基化位点的〜(18)O标记的肽同位素分布。该算法的速度和鲁棒性创建了一种通用工具,可用于质谱数据分析的许多不同领域。

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