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Relative Information Content and Top-down Proteomics by Mass Spectrometry: The Utility of Ion/Ion Proton-transfer Reactions in Electrospray-based Approaches

机译:质谱法的相对信息含量和自上而下的蛋白质组学:基于电喷雾的方法中离子/离子质子转移反应的实用性

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摘要

Computer simulations of electrospray ionization (ESI) and collision-induced dissociation (CID) experiments were employed to examine the informing power associated with “top-down” proteomics implemented with some commonly used mass analyzers, i.e. the quadrupole ion trap (QIT), the Fourier transform-ion cyclotron resonance mass spectrometer (FT-ICRMS) and the time-of-flight (TOF) mass spectrometer. Using a ratio of the separated (or resolved) peaks to the total number of predicted peaks as a measure of informing power, the ESI/MS simulation of a mixture of proteins showed that the FT-ICRMS exhibited the highest informing power among the three instruments being studied, with the QIT giving the lowest informing power, which was expected from the analysis of the “component capacity” of the three approaches. Also as expected on the basis of resolving elements per component, a dramatic increase in the informing power of the approach was obtained when ion/ion proton-transfer reactions were used to reduce the number of peaks and to minimize overlap between ions of different mass and charge but similar mass-to-charge ratio. With the assumptions made in this study, the informing power of the TOF+ion/ion approach rivaled or even exceeded that of the FT-ICRMS approach, despite significantly lower mass resolution. This result stemmed both from a reduction in the number of peaks and their dispersion over a much wider range of mass-to-charge ratios. Similar results were obtained from the CID simulation, where the informing power of different approaches was evaluated on the basis of the ratio of the number of ions for which a mass could be determined unambiguously to the total number of ions in the spectra.
机译:使用电喷雾电离(ESI)和碰撞诱导解离(CID)实验的计算机模拟来检查与使用某些常用质量分析器(例如四极离子阱(QIT)),“自上而下”蛋白质组学相关的信息能力。傅立叶变换离子回旋共振质谱仪(FT-ICRMS)和飞行时间(TOF)质谱仪。使用分离的(或分离的)峰与预测峰总数的比值作为衡量通报能力的方法,蛋白质混合物的ESI / MS模拟表明,FT-ICRMS表现出三种仪器中最高的通报能力在研究中,QIT给出的通知能力最低,这是通过对三种方法的“组件容量”进行分析而得出的。同样,如基于每个组分的拆分元素所预期的那样,当使用离子/离子质子转移反应减少峰数并使不同质量和不同离子之间的重叠最小时,该方法的通知能力也得到了显着提高。电荷,但质荷比相似。根据本研究的假设,尽管质量分辨率明显降低,但TOF + ion / ion方法的信息能力却与FT-ICRMS方法相当甚至超过。该结果既得益于峰数的减少及其在更宽的质荷比范围内的分散。从CID模拟中获得了相似的结果,其中,根据可以明确确定质量的离子数与光谱中离子总数的比值,评估不同方法的通知能力。

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