Online, Bottom-up Characterization of Histone H4 4–17 Isomers

IF 6.7 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Cassandra N. Fuller, Kevin Jeanne Dit Fouque, Lilian Valadares Tose, Francisca N. L. Vitorino, Benjamin A. Garcia* and Francisco Fernandez-Lima*, 
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Abstract

The “Histone Code” is comprised of specific types and positions of post-translational modifications (PTMs) which produce biological signals for gene regulation and have potential as biomarkers for medical diagnostics. Previous work has shown that electron-based fragmentation improves the sequence coverage and confidence of labile PTM position assignment. Here, we evaluated two derivatization methods (e.g., irreversible - propionylation and reversible–citraconylation) for bottom-up analysis of histone H4 4–17 proteoforms using online liquid chromatography (LC), trapped ion mobility spectrometry (TIMS), and electron-based dissociation (ExD) in tandem with mass spectrometry. Two platforms were utilized: a custom-built LC-TIMS-q-ExD-ToF MS/MS based on a Bruker Impact and a commercial μLC-EAD-ToF MS/MS SCIEX instrument. Complementary LC-TIMS preseparation of H4 4–17 0–4ac positional isomer standards showed that they can be resolved in their endogenous form, while positional isomers cannot be fully resolved in their propionylated form; online LC-ExD-MS/MS provided high sequence coverage (>90%) for all H4 4–17 (0–4ac) proteoforms in both instrumental platforms. When applied to model cancer cells treated with a histone deacetylase inhibitor (HeLa + HDACi), both derivatization methods and platforms detected and confirmed H4 4–17 (0–4ac) proteolytic peptides based on their fragmentation pattern. Moreover, a larger number of HeLa + HDACi H4 4–17 proteoforms were observed combining LC-TIMS and LC-q-ExD-ToF MS/MS due to the positional isomer preseparation in the LC-TIMS domain of citraconylated H4 4–17 (0–4ac) peptides.

Abstract Image

组蛋白 H4 4-17 异构体的自下而上在线表征
组蛋白密码 "由特定类型和位置的翻译后修饰(PTMs)组成,可产生基因调控的生物信号,并有可能成为医学诊断的生物标志物。以往的研究表明,电子碎片技术可提高序列覆盖率和易变 PTM 位置分配的可信度。在此,我们评估了两种衍生化方法(如不可逆-丙酰化和可逆-柠檬酰化),利用在线液相色谱法(LC)、阱离子迁移谱法(TIMS)和电子解离法(ExD)与质谱法串联,对组蛋白 H4 4-17 蛋白形态进行自下而上的分析。使用了两个平台:基于布鲁克 Impact 的定制 LC-TIMS-q-ExD-ToF MS/MS 和商用 μLC-EAD-ToF MS/MS SCIEX 仪器。H4 4-17 0-4ac 位置异构体标准品的互补 LC-TIMS 预分离结果表明,它们可以以内源形式分离,而位置异构体则不能以丙酰化形式完全分离;在线 LC-ExD-MS/MS 为两种仪器平台上的所有 H4 4-17 (0-4ac) 蛋白形式提供了高序列覆盖率(90%)。当应用于组蛋白去乙酰化酶抑制剂处理的模型癌细胞(HeLa + HDACi)时,两种衍生方法和平台都能根据H4 4-17 (0-4ac)蛋白水解肽的片段模式检测并确认H4 4-17 (0-4ac)蛋白水解肽。此外,由于柠檬酰化 H4 4-17 (0-4ac) 肽的 LC-TIMS 域中存在位置异构体预分离,因此结合 LC-TIMS 和 LC-q-ExD-ToF MS/MS 可以观察到更多的 HeLa + HDACi H4 4-17 蛋白质形式。
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来源期刊
Analytical Chemistry
Analytical Chemistry 化学-分析化学
CiteScore
12.10
自引率
12.20%
发文量
1949
审稿时长
1.4 months
期刊介绍: Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.
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