Barnett Institute of Chemical and Biological Analysis, Department of Chemistry and Chemical Biology, Northeastern University, 360 Huntington Ave., Boston, Massachusetts 02115, United States.
J Proteome Res. 2024 Jun 7;23(6):2230-2240. doi: 10.1021/acs.jproteome.4c00181. Epub 2024 May 1.
Deep proteomic profiling of complex biological and medical samples available at low nanogram and subnanogram levels is still challenging. Thorough optimization of settings, parameters, and conditions in nanoflow liquid chromatography-tandem mass spectrometry (MS)-based proteomic profiling is crucial for generating informative data using amount-limited samples. This study demonstrates that by adjusting selected instrument parameters, e.g., ion injection time, automated gain control, and minimally altering the conditions for resuspending or storing the sample in solvents of different compositions, up to 15-fold more thorough proteomic profiling can be achieved compared to conventionally used settings. More specifically, the analysis of 1 ng of the HeLa protein digest standard by Q Exactive HF-X Hybrid Quadrupole-Orbitrap and Orbitrap Fusion Lumos Tribrid mass spectrometers yielded an increase from 1758 to 5477 (3-fold) and 281 to 4276 (15-fold) peptides, respectively, demonstrating that higher protein identification results can be obtained using the optimized methods. While the instruments applied in this study do not belong to the latest generation of mass spectrometers, they are broadly used worldwide, which makes the guidelines for improving performance desirable to a wide range of proteomics practitioners.
在低纳克和亚纳克水平下对复杂生物和医学样本进行深度蛋白质组学分析仍然具有挑战性。在基于纳流液相色谱-串联质谱(MS)的蛋白质组学分析中,彻底优化设置、参数和条件对于使用有限量的样本生成有意义的数据至关重要。本研究表明,通过调整选定的仪器参数,例如离子注入时间、自动增益控制,以及最小化改变在不同组成溶剂中重新悬浮或储存样品的条件,可以实现多达 15 倍更全面的蛋白质组学分析。更具体地说,与传统使用的设置相比,通过 Q Exactive HF-X 混合四极杆-轨道阱和 Orbitrap Fusion Lumos Tribrid 质谱仪分析 1ng 的 HeLa 蛋白消化标准品,分别得到了 1758 到 5477(3 倍)和 281 到 4276(15 倍)个肽段,这表明使用优化的方法可以获得更高的蛋白质鉴定结果。尽管本研究中应用的仪器不属于最新一代的质谱仪,但它们在全球范围内广泛使用,因此,提高性能的指南对广泛的蛋白质组学从业者来说是可取的。