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靶向(磷酸化)蛋白质组学中的脯氨酸。

Targeting proline in (phospho)proteomics.

机构信息

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, The Netherlands.

Netherlands Proteomics Center, Utrecht, The Netherlands.

出版信息

FEBS J. 2020 Jul;287(14):2979-2997. doi: 10.1111/febs.15190. Epub 2020 Jan 13.

Abstract

Mass spectrometry-based proteomics experiments typically start with the digestion of proteins using trypsin, chosen because of its high specificity, availability, and ease of use. It has become apparent that the sole use of trypsin may impose certain limits on our ability to grasp the full proteome, missing out particular sites of post-translational modifications, protein segments, or even subsets of proteins. To tackle this problem, alternative proteases have been introduced and shown to lead to an increase in the detectable (phospho)proteome. Here, we argue that there may be further room for improvement and explore the protease EndoPro. For optimal peptide identification rates, we explored multiple peptide fragmentation techniques (HCD, ETD, and EThcD) and employed Byonic as search algorithm. We obtain peptide IDs for about 40% of the MS2 spectra (66% for trypsin). EndoPro cleaves with high specificity at the C-terminal site of Pro and Ala residues and displays activity in a broad pH range, where we focused on its performance at pH = 2 and 5.5. The proteome coverage of EndoPro at these two pH values is rather distinct, and also complementary to the coverage obtained with trypsin. As about 40% of mammalian protein phosphorylations are proline-directed, we also explored the performance of EndoPro in phosphoproteomics. EndoPro extends the coverable phosphoproteome substantially, whereby both the, at pH = 2 and 5.5, acquired phosphoproteomes are complementary to each other and to the phosphoproteome obtained using trypsin. Hence, EndoPro is a powerful tool to exploit in (phospho)proteomics applications.

摘要

基于质谱的蛋白质组学实验通常从使用胰蛋白酶消化蛋白质开始,选择胰蛋白酶是因为它具有高度的特异性、可用性和易用性。然而,很明显,仅使用胰蛋白酶可能会限制我们全面了解蛋白质组的能力,从而错过特定的翻译后修饰位点、蛋白质片段,甚至是蛋白质的子集。为了解决这个问题,已经引入了替代蛋白酶,并证明它们可以增加可检测的(磷酸化)蛋白质组。在这里,我们认为可能还有进一步改进的空间,并探索了蛋白酶 EndoPro。为了获得最佳的肽鉴定率,我们探索了多种肽片段化技术(HCD、ETD 和 EThcD),并使用 Byonic 作为搜索算法。我们获得了大约 40%的 MS2 谱(胰蛋白酶为 66%)的肽 ID。EndoPro 在脯氨酸和丙氨酸残基的 C 末端位点具有高度特异性的切割活性,并在广泛的 pH 范围内显示出活性,我们专注于其在 pH = 2 和 5.5 时的性能。在这两个 pH 值下,EndoPro 的蛋白质组覆盖率相当不同,并且与胰蛋白酶获得的覆盖率互补。由于大约 40%的哺乳动物蛋白磷酸化是脯氨酸导向的,我们还探索了 EndoPro 在磷酸蛋白质组学中的性能。EndoPro 大大扩展了可覆盖的磷酸蛋白质组,从而使在 pH = 2 和 5.5 下获得的磷酸蛋白质组彼此互补,并且与使用胰蛋白酶获得的磷酸蛋白质组互补。因此,EndoPro 是(磷酸化)蛋白质组学应用中非常有用的工具。

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