Wöhlbrand Lars, Rabus Ralf, Blasius Bernd, Feenders Christoph
General and Molecular Microbiology, Institute for Chemistry and Biology of the Marine Environment (ICBM), Carl von Ossietzky University of Oldenburg, Oldenburg, Germany.
J Mol Microbiol Biotechnol. 2017;27(3):199-212. doi: 10.1159/000478907. Epub 2017 Aug 30.
Protein identification by shotgun proteomics, i.e., nano-liquid chromatography (nanoLC) peptide separation online coupled to electrospray ionization (ESI) mass spectrometry (MS)/MS, is the most widely used gel-free approach in proteome research. While the mass spectrometer accounts for mass accuracy and MS/MS frequency, the nanoLC setup and gradient time influence the number of peptides available for MS analysis, which ultimately determine the number of proteins identifiable. Here, we report on the influence of (i) analytical column length (15, 25, or 50 cm) coupled to (ii) the applied gradient length (120, 240, 360, 480, or 600 min), as well as (iii) MS/MS frequency on peptide/protein identification by shotgun proteomics of (iv) 2 marine bacteria. Longer gradients increased the number of peptides/proteins identified as well as the reproducibility of identification. Furthermore, longer analytical columns strictly enlarge the covered proteome complement. Notably, the proteome complement identified with a short column and applying a long gradient is also covered when using longer columns with shorter gradients. Coverage of the proteome complement further increases with higher MS/MS frequency. Compilation of peptide lists of replicate analyses (same gradient length) improves protein identification, while compilation of analyses with different gradient lengths yields a similar or even higher number of proteins using comparable or even less total analysis time.
通过鸟枪法蛋白质组学进行蛋白质鉴定,即在线联用纳升液相色谱(nanoLC)肽段分离与电喷雾电离(ESI)质谱(MS)/ MS,是蛋白质组研究中使用最广泛的无胶方法。虽然质谱仪决定了质量精度和MS / MS频率,但纳升液相色谱的设置和梯度时间会影响可用于MS分析的肽段数量,而这最终决定了可鉴定蛋白质的数量。在此,我们报告了(i)分析柱长度(15、25或50 cm)与(ii)所应用的梯度长度(120、240、360、480或600分钟)以及(iii)MS / MS频率对(iv)2种海洋细菌的鸟枪法蛋白质组学肽段/蛋白质鉴定的影响。更长的梯度增加了鉴定出的肽段/蛋白质数量以及鉴定的重现性。此外,更长的分析柱严格扩大了所覆盖的蛋白质组范围。值得注意的是,当使用更长的柱子和更短的梯度时,也能覆盖用短柱并应用长梯度所鉴定出的蛋白质组范围。随着MS / MS频率的提高,蛋白质组范围的覆盖度进一步增加。重复分析(相同梯度长度)的肽段列表汇编可提高蛋白质鉴定水平,而使用不同梯度长度的分析汇编在总分析时间相当甚至更短的情况下可产生相似甚至更多数量的蛋白质。