利用 Zeno SWATH 数据非依赖性采集结合电子激活解离和机器学习技术对甲壳动物端足目在蜕皮周期中的脂质组学和代谢组学进行伴随研究。

Concomitant investigation of crustacean amphipods lipidome and metabolome during the molting cycle by Zeno SWATH data-independent acquisition coupled with electron activated dissociation and machine learning.

机构信息

Univ Lyon, CNRS, Université Claude Bernard Lyon 1, Institut des Sciences Analytiques, UMR 5280, 5 rue de la Doua, F-69100, Villeurbanne, France.

INRAE, UR RiverLy, Ecotoxicology Team, F-69625, Villeurbanne, France.

出版信息

Anal Chim Acta. 2024 May 22;1304:342533. doi: 10.1016/j.aca.2024.342533. Epub 2024 Apr 2.

Abstract

BACKGROUND

DIA (Data-Independent Acquisition) is a powerful technique in Liquid Chromatography coupled with high-resolution tandem Mass Spectrometry (LC-MS/MS) initially developed for proteomics studies and recently emerging in metabolomics and lipidomics. It provides a comprehensive and unbiased coverage of molecules with improved reproducibility and quantitative accuracy compared to Data-Dependent Acquisition (DDA). Combined with the Zeno trap and Electron-Activated Dissociation (EAD), DIA enhances data quality and structural elucidation compared to conventional fragmentation under CID. These tools were applied to study the lipidome and metabolome of the freshwater amphipod Gammarus fossarum, successfully discriminating stages and highlighting significant biological features. Despite being underused, DIA, along with the Zeno trap and EAD, holds great potential for advancing research in the omics field.

RESULTS

DIA combined with the Zeno trap enhances detection reproducibility compared to conventional DDA, improving fragmentation spectra quality and putative identifications. LC coupled with Zeno-SWATH-DIA methods were used to characterize molecular changes in reproductive cycle of female gammarids. Multivariate data analysis including Principal Component Analysis and Partial Least Square Discriminant Analysis successfully identified significant features. EAD fragmentation helped to identify unknown features and to confirm their molecular structure using fragmentation spectra database annotation or machine learning. EAD database matching accurately annotated five glycerophospholipids, including the position of double bonds on fatty acid chain moieties. SIRIUS database predicted structures of unknown features based on experimental fragmentation spectra to compensate for database incompleteness.

SIGNIFICANCE

Reproducible detection of features and confident identification of putative compounds are pivotal stages within analytical pipelines. The DIA approach combined with Zeno pulsing enhances detection sensitivity and targeted fragmentation with EAD in positive polarity provides orthogonal fragmentation information. In our study, Zeno-DIA and EAD thereby facilitated a comprehensive and insightful exploration of pertinent biological molecules associated with the reproductive cycle of gammarids. The developed methodology holds great promises for identifying informative biomarkers on the health status of an environmental sentinel species.

摘要

背景

DIA(数据非依赖性采集)是一种强大的技术,最初应用于蛋白质组学研究,最近也在代谢组学和脂质组学中崭露头角,它与高效液相色谱和高分辨率串联质谱(LC-MS/MS)相结合,为分子提供了全面而无偏的覆盖,并提高了重现性和定量准确性,与数据依赖性采集(DDA)相比。与电子激活解离(EAD)相结合,DIA 增强了数据质量和结构解析能力,与 CID 下的常规碎裂相比。这些工具被应用于研究淡水片脚类动物谷糠虾的脂质组和代谢组,成功地区分了阶段并突出了显著的生物学特征。尽管 DIA 与 Zeno 陷阱和 EAD 一起使用的频率较低,但它在推进组学领域的研究方面具有巨大的潜力。

结果

与传统的 DDA 相比,DIA 与 Zeno 陷阱相结合提高了检测重现性,改善了碎裂谱的质量和可能的鉴定。将 LC 与 Zeno-SWATH-DIA 方法相结合,用于描述雌性片脚类动物生殖周期中的分子变化。多元数据分析,包括主成分分析和偏最小二乘判别分析,成功地识别了显著特征。EAD 碎裂有助于识别未知特征,并使用碎裂谱数据库注释或机器学习来确认它们的分子结构。EAD 数据库匹配准确地注释了五种甘油磷脂,包括脂肪酸链部分双键的位置。SIRIUS 数据库根据实验碎裂谱预测未知特征的结构,以弥补数据库的不完整性。

意义

特征的可重现检测和假定化合物的可靠鉴定是分析管道中的关键阶段。DIA 方法与 Zeno 脉冲相结合,在正离子模式下通过 EAD 增强了检测灵敏度和靶向碎裂,提供了正交碎裂信息。在我们的研究中,Zeno-DIA 和 EAD 促进了对与片脚类动物生殖周期相关的相关生物学分子的全面深入探索。所开发的方法为确定环境指示物种健康状况的信息生物标志物提供了巨大的潜力。

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