Midha Mukul K, Kapil Charu, Maes Michal, Baxter David H, Morrone Seamus R, Prokop Timothy J, Moritz Robert L
Institute for Systems Biology.
bioRxiv. 2023 Feb 17:2023.02.15.528699. doi: 10.1101/2023.02.15.528699.
By far the largest contribution to ion detectability in liquid chromatography-driven mass spectrometry-based proteomics is the efficient generation of peptide ions by the electrospray source. To maximize the transfer of peptides from liquid to a gaseous phase to allow molecular ions to enter the mass spectrometer at micro-spray flow rates, an efficient electrospray process is required. Here we describe superior performance of new Vacuum-Insulated-Probe-Heated-ElectroSpray-Ionization source (VIP-HESI) coupled with micro-spray flow rate chromatography and Bruker timsTOF PRO mass spectrometer. VIP-HESI significantly improves chromatography signals in comparison to nano-spray ionization using the CaptiveSpray source and provides increased protein detection with higher quantitative precision, enhancing reproducibility of sample injection amounts. Protein quantitation of human K562 lymphoblast samples displayed excellent chromatographic retention time reproducibility (<10% coefficient-of-variation (CV)) with no signal degradation over extended periods of time, and a mouse plasma proteome analysis identified 12% more plasma protein groups allowing large-scale analysis to proceed with confidence (1,267 proteins at 0.4% CV). We show that Slice-PASEF mode with VIP-HESI setup is sensitive in identifying low amounts of peptide without losing quantitative precision. We demonstrate that VIP-HESI coupled with micro-flow-rate chromatography achieves higher depth of coverage and run-to-run reproducibility for a broad range of proteomic applications.
到目前为止,在液相色谱驱动的基于质谱的蛋白质组学中,对离子可检测性贡献最大的是电喷雾源高效产生肽离子。为了使肽从液相高效转移到气相,以便分子离子以微喷雾流速进入质谱仪,需要一个高效的电喷雾过程。在这里,我们描述了新型真空绝缘探针加热电喷雾电离源(VIP-HESI)与微喷雾流速色谱和布鲁克timsTOF PRO质谱仪相结合的卓越性能。与使用CaptiveSpray源的纳米喷雾电离相比,VIP-HESI显著改善了色谱信号,并以更高的定量精度提高了蛋白质检测能力,增强了样品进样量的重现性。对人K562淋巴母细胞样品的蛋白质定量显示出出色的色谱保留时间重现性(变异系数(CV)<10%),且在较长时间内信号无降解,对小鼠血浆蛋白质组的分析发现血浆蛋白质组群多了12%,从而能够自信地进行大规模分析(在0.4%CV时可鉴定1267种蛋白质)。我们表明,采用VIP-HESI设置的Slice-PASEF模式在识别少量肽时很灵敏,且不会损失定量精度。我们证明,VIP-HESI与微流速色谱相结合,可为广泛的蛋白质组学应用实现更高的覆盖深度和批次间重现性。