Electron Capture vs Transfer Dissociation for Site Determination of Tryptic Peptide Tyrosine Sulfation: Direct Detection of Fibrinogen Sulfation Sites and Identification of Novel Isobaric Interferences

IF 3.8 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Journal of Proteome Research Pub Date : 2024-06-20 DOI:10.1021/acs.jproteome.4c00072
Menatallah M. Youssef, Carson W. Szot, Jeff Folz, Luke M. Collier, Hye Kyong Kweon, Steven A. DeFiglia, Miriam F. Ayad, Lobna A. Hussein, Maha F. Abdel-Ghany and Kristina Hakansson*, 
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Abstract

Tyrosine sulfation, an understudied but crucial post-translational modification, cannot be directly detected in conventional nanoflow liquid chromatography-tandem mass spectrometry (nanoLC-MS/MS) due to the extreme sulfate lability. Here, we report the detection of sulfate-retaining fragments from LC-electron capture dissociation (ECD) and nanoLC-electron transfer higher energy collision dissociation (EThcD). Sulfopeptide candidates were identified by Proteome Discoverer and MSFragger analysis of nanoLC-HCD MS/MS data and added to inclusion lists for LC-ECD or nanoLC-EThcD MS/MS. When this approach failed, targeted LC-ECD with fixed m/z isolation windows was performed. For the plasma protein fibrinogen, the known pyroglutamylated sulfopeptide QFPTDYDEGQDDRPK from the beta chain N-terminus was identified despite a complete lack of sulfate-containing fragment ions. The peptide QVGVEHHVEIEYD from the gamma-B chain C-terminus was also identified as sulfated or phosphorylated. This sulfopeptide is not annotated in Uniprot but was previously reported. MSFragger further identified a cysteine-containing peptide from the middle of the gamma chain as sulfated and deamidated. NanoLC-EThcD and LC-ECD MS/MS confirmed the two former sulfopeptides via sulfate-retaining fragment ions, whereas an unexpected fragmentation pattern was observed for the third sulfopeptide candidate. Manual interpretation of the LC-ECD spectrum revealed two additional isobaric identifications: a trisulfide-linked cysteinyl-glycine or a carbamidomethyl-dithiothreiotol covalent adduct. Synthesis of such adducts confirmed the latter identity.

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电子捕获与转移解离在胰蛋白酶肽酪氨酸硫化位点测定中的应用:直接检测纤维蛋白原硫酸化位点并识别新型等位干扰。
酪氨酸硫酸化是一种未被充分研究但却至关重要的翻译后修饰,由于其极易被硫酸盐腐蚀,传统的纳米液相色谱-串联质谱法(nanoLC-MS/MS)无法直接检测酪氨酸硫酸化。在此,我们报告了通过液相色谱-电子捕获解离(ECD)和纳米液相色谱-电子转移高能碰撞解离(EThcD)对含硫酸盐片段的检测。通过蛋白质组发现者(Proteome Discoverer)和 MSFragger 对纳米LC-HCD MS/MS 数据的分析,确定了硫肽候选物,并将其添加到 LC-ECD 或纳米LC-EThcD MS/MS 的包含列表中。当这种方法失败时,则使用固定的 m/z 分离窗口进行有针对性的 LC-ECD。对于血浆蛋白纤维蛋白原,尽管完全缺乏含硫酸盐的碎片离子,但还是从β链N端鉴定出了已知的焦谷氨酰化硫肽QFPTDYDEGQDDRPK。γ-B链C端的多肽QVGVEHHVEIEYD也被鉴定为硫酸化或磷酸化。该硫酸化肽未在 Uniprot 中注释,但之前已有报道。MSFragger 进一步鉴定出 gamma 链中间的一个含半胱氨酸的肽被硫酸化和脱酰胺化。NanoLC-EThcD 和 LC-ECD MS/MS 通过保留硫酸盐的碎片离子证实了前两种硫肽,而第三种硫肽候选物则出现了意想不到的碎片模式。对 LC-ECD 图谱的人工解读发现了另外两种等位鉴定:一种是与三硫化物连接的半胱氨酰-甘氨酸,另一种是氨甲酰-二硫杂硫醇共价加合物。此类加合物的合成证实了后一种身份。
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来源期刊
Journal of Proteome Research
Journal of Proteome Research 生物-生化研究方法
CiteScore
9.00
自引率
4.50%
发文量
251
审稿时长
3 months
期刊介绍: Journal of Proteome Research publishes content encompassing all aspects of global protein analysis and function, including the dynamic aspects of genomics, spatio-temporal proteomics, metabonomics and metabolomics, clinical and agricultural proteomics, as well as advances in methodology including bioinformatics. The theme and emphasis is on a multidisciplinary approach to the life sciences through the synergy between the different types of "omics".
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