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Extending the limits of quantitative proteome profiling with data-independent acquisition and application to acetaminophen-treated three-dimensional liver microtissues.

机译:通过数据独立获取和应用对乙酰氨基酚治疗的三维肝脏显微组织,扩展了蛋白质组定量分析的范围。

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The data-independent acquisition (DIA) approach has recently been introduced as a novel mass spectrometric method that promises to combine the high content aspect of shotgun proteomics with the reproducibility and precision of selected reaction monitoring. Here, we evaluate, whether SWATH-MS type DIA effectively translates into a better protein profiling as compared with the established shotgun proteomics. We implemented a novel DIA method on the widely used Orbitrap platform and used retention-time-normalized (iRT) spectral libraries for targeted data extraction using Spectronaut. We call this combination hyper reaction monitoring (HRM). Using a controlled sample set, we show that HRM outperformed shotgun proteomics both in the number of consistently identified peptides across multiple measurements and quantification of differentially abundant proteins. The reproducibility of HRM in peptide detection was above 98%, resulting in quasi complete data sets compared with 49% of shotgun proteomics. Utilizing HRM, we profiled acetaminophen (APAP)(1)-treated three-dimensional human liver microtissues. An early onset of relevant proteome changes was revealed at subtoxic doses of APAP. Further, we detected and quantified for the first time human NAPQI-protein adducts that might be relevant for the toxicity of APAP. The adducts were identified on four mitochondrial oxidative stress related proteins (GATM, PARK7, PRDX6, and VDAC2) and two other proteins (ANXA2 and FTCD). Our findings imply that DIA should be the preferred method for quantitative protein profiling.
机译:最近已经引入了数据独立获取(DIA)方法作为一种新颖的质谱方法,该方法有望将shot弹枪蛋白质组学的高含量方面与所选反应监测的可重复性和精度相结合。在这里,我们评估,与已建立的shot弹枪蛋白质组学相比,SWATH-MS DIA型是否能有效转化为更好的蛋白质谱。我们在广泛使用的Orbitrap平台上实施了一种新颖的DIA方法,并使用了保留时间归一化(iRT)光谱库来使用Spectronaut进行目标数据提取。我们称这种组合为超反应监测(HRM)。使用受控样本集,我们显示HRM在多次测量中一致鉴定的肽的数量以及差异丰富的蛋白质的定量方面均胜过both弹枪蛋白质组学。 HRM在肽检测中的可重复性高于98%,从而形成了完整的数据集,而shot弹枪蛋白质组学的结果为49%。利用HRM,我们分析了对乙酰氨基酚(APAP)(1)处理的三维人肝脏微组织。在亚毒性剂量的APAP中发现了相关蛋白质组变化的早期发作。此外,我们首次检测并定量了可能与APAP毒性有关的人NAPQI蛋白加合物。在四种线粒体氧化应激相关蛋白(GATM,PARK7,PRDX6和VDAC2)和另外两种蛋白(ANXA2和FTCD)上鉴定了加合物。我们的发现表明,DIA应该是定量蛋白质谱分析的首选方法。

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