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The Impact II, a Very High-Resolution Quadrupole Time-of-Flight Instrument (QTOF) for Deep Shotgun Proteomics

机译:Impact II,一种用于深霰弹枪蛋白质组学的超高分辨率四极杆飞行时间仪器(QTOF)

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摘要

Hybrid quadrupole time-of-flight (QTOF) mass spectrometry is one of the two major principles used in proteomics. Although based on simple fundamentals, it has over the last decades greatly evolved in terms of achievable resolution, mass accuracy, and dynamic range. The Bruker impact platform of QTOF instruments takes advantage of these developments and here we develop and evaluate the impact II for shotgun proteomics applications. Adaption of our heated liquid chromatography system achieved very narrow peptide elution peaks. The impact II is equipped with a new collision cell with both axial and radial ion ejection, more than doubling ion extraction at high tandem MS frequencies. The new reflectron and detector improve resolving power compared with the previous model up to 80%, i.e. to 40,000 at m/z 1222. We analyzed the ion current from the inlet capillary and found very high transmission (>80%) up to the collision cell. Simulation and measurement indicated 60% transfer into the flight tube. We adapted MaxQuant for QTOF data, improving absolute average mass deviations to better than 1.45 ppm. More than 4800 proteins can be identified in a single run of HeLa digest in a 90 min gradient. The workflow achieved high technical reproducibility (R2 > 0.99) and accurate fold change determination in spike-in experiments in complex mixtures. Using label-free quantification we rapidly quantified haploid against diploid yeast and characterized overall proteome differences in mouse cell lines originating from different tissues. Finally, after high pH reversed-phase fractionation we identified 9515 proteins in a triplicate measurement of HeLa peptide mixture and 11,257 proteins in single measurements of cerebellum-the highest proteome coverage reported with a QTOF instrument so far.
机译:混合四极杆飞行时间(QTOF)质谱是蛋白质组学中使用的两个主要原理之一。尽管基于简单的原理,但在过去的几十年中,它在可实现的分辨率,质量准确度和动态范围方面取得了巨大的进步。 QTOF仪器的布鲁克冲击平台利用了这些发展,在这里我们为and弹枪蛋白质组学应用开发和评估Impact II。我们加热的液相色谱系统的改编获得了非常窄的肽洗脱峰。 Impact II配备了具有轴向和径向离子喷射功能的新型碰撞池,在高串联MS频率下将离子提取量提高了一倍以上。与以前的模型相比,新的反射器和检测器将分辨能力提高了80%,即在m / z 1222时达到了40,000。我们分析了来自入口毛细管的离子流,发现直到碰撞时都有很高的透射率(> 80%)细胞。模拟和测量表明有60%转移到飞行管中。我们将MaxQuant应用于QTOF数据,将绝对平均质量偏差提高到1.45 ppm以上。在90分钟的梯度内,单次HeLa消化过程中可以鉴定出4800多种蛋白质。在复杂混合物的加标实验中,该工作流程实现了很高的技术重现性(R2> 0.99)和准确的倍数变化测定。使用无标记定量,我们快速定量了针对二倍体酵母的单倍体,并表征了源自不同组织的小鼠细胞系中的整体蛋白质组差异。最后,在高pH反相分馏后,我们在三次重复测量HeLa肽混合物中鉴定出9515种蛋白质,在小脑的单次测量中鉴定出11257种蛋白质,这是迄今为止QTOF仪器报道的最高蛋白质组覆盖率。

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