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An Ion Mobility Assisted Data Independent LC-MS Strategy for the Analysis of Complex Biological Samples

机译:用于复杂生物样品分析的离子迁移辅助数据独立LC-MS策略

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The use of gas-phase ion mobility separation in LC-MS based bottom-up proteomic experiments is described. A data-independent acquisition approach was employed in combination with one and two dimensional reversed phase liquid chromatography separations. The ion mobility component in the acquisition schema affords additional acquisition specificity and improved peptide resolution in terms of system peak capacity. The additional acquisition specificity was mainly achieved by means of the combined retention and drift time association of product to precursor ions and chemical noise reduction. Experimental data from replicate experiments were utilized to determine the rate of increase for the number of detected ions and deconvoluted accurate mass - retention time pairs and protein and peptide identifications as a measure of peak capacity by varying mass spectral resolution, consideration of multidimensional separations and the incorporation of ion mobility into the analytical schema. The presented data reveals a high degree of reproducibility at the ion detection, peptide and protein level, when analyzed under identical conditions, with a concurrent average increase in the number of identified peptides and proteins of 160% in the instance of mobility assisted acquisitions. Two-dimensional separations independently improved the peptide and protein identification rates by another 260% and 320%, respectively. Collectively, both separation techniques, reversed phase chromatography and ion mobility, increased the peak capacity and number of peptides and proteins significantly. The applicability of the technique and instrument platform for qualitative and quantitative proteomics studies will be demonstrated.
机译:描述了气相离子迁移率分离在基于LC-MS的自下而上的蛋白质组学实验中的应用。与数据无关的采集方法与一维和二维反相液相色谱分离结合使用。采集方案中的离子迁移率成分提供了额外的采集特异性,并提高了系统峰容量方面的肽分辨率。额外的采集特异性主要是通过产品与前体离子的保留时间和漂移时间的结合以及化学噪音的降低来实现的。通过重复实验获得的实验数据可用于确定检测到的离子数量的增加速率以及去卷积的准确质量保留时间对以及蛋白质和肽段鉴定,以通过改变质谱分辨率,考虑多维分离和质谱分析来测量峰容量。将离子迁移率纳入分析方案。所提供的数据表明,在相同条件下进行分析时,在离子检测,肽和蛋白质水平上具有高度的可重复性,在迁移辅助采集的情况下,鉴定出的肽和蛋白质的数量同时平均增加了160%。二维分离分别将肽和蛋白质的识别率分别提高了260%和320%。总而言之,分离技术,反相色谱法和离子迁移率都显着提高了峰容量以及肽和蛋白质的数量。将证明该技术和仪器平台在定性和定量蛋白质组学研究中的适用性。

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