在秀丽隐杆线虫脂质体中常检测到磷酸化鞘糖脂。

IF 3.5 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Michael Witting, Liesa Salzer, Sven W Meyer, Aiko Barsch
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引用次数: 0

摘要

简介:脂质鉴定是脂质组学的基石,由于脂质的特定特性,它需要专门的分析工作流程。鉴定没有参考光谱的新型脂质和脂质种类是繁琐的,通常需要大量的手工工作。整合高分辨率质谱与增强从色谱和离子迁移分离使完整的脂质的深入调查。目的:我们研究了秀丽隐杆线虫的磷酸化鞘糖脂,这是一种生物医学模式生物,旨在从这类脂质中识别不同的物种,这类脂质仅在一篇特定的出版物中被描述过。我们检查了这些脂质是否可以在秀丽隐杆线虫的脂质提取物中检测到。方法:采用UHPLC-UHR-TOF-MS和UHPLC-TIMS-TOF-MS结合专用数据分析检测鞘糖脂磷酸化的存在。具体来说,使用质谱查询语言(Mass Spec Query Language, MassQL)搜索碎片数据,在两个数据集中识别候选特征。额外使用的保留时间(RT)和碰撞横截面(CCS)信息允许过滤假阳性注释。结果:我们在两个不同的脂质组学数据集中检测到所有先前描述的磷酸化鞘糖脂和新物种及其生物合成前体。通过节省人工数据调查的时间,MassQL显著加快了这个过程。总共有20多种鞘脂可以被描述。结论:MassQL使我们能够系统地搜索磷酸化鞘糖脂及其潜在的生物合成前体。利用正交信息,如RT和CCS,有助于过滤假阳性结果。通过对两个不同数据集的检测,我们证明了这些鞘脂是秀丽隐杆线虫脂质体的一般组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phosphorylated glycosphingolipids are commonly detected in Caenorhabditis elegans lipidomes.

Introduction: The identification of lipids is a cornerstone of lipidomics, and due to the specific characteristics of lipids, it requires dedicated analysis workflows. Identifying novel lipids and lipid species for which no reference spectra are available is tedious and often involves a lot of manual work. Integrating high-resolution mass spectrometry with enhancements from chromatographic and ion mobility separation enables the in-depth investigation of intact lipids.

Objectives: We investigated phosphorylated glycosphingolipids from the nematode Caenorhabditis elegans, a biomedical model organism, and aimed to identify different species from this class of lipids, which have been described in one particular publication only. We checked if these lipids can be detected in lipid extracts of C. elegans.

Methods: We used UHPLC-UHR-TOF-MS and UHPLC-TIMS-TOF-MS in combination with dedicated data analysis to check for the presence of phosphorylated glycosphingolipids. Specifically, candidate features were identified in two datasets using Mass Spec Query Language (MassQL) to search fragmentation data. The additional use of retention time (RT) and collisional cross section (CCS) information allowed to filter false positive annotations.

Results: As a result, we detected all previously described phosphorylated glycosphingolipids and novel species as well as their biosynthetic precursors in two different lipidomics datasets. MassQL significantly speeds up the process by saving time that would otherwise be spent on manual data investigations. In total over 20 sphingolipids could be described.

Conclusion: MassQL allowed us to search for phosphorylated glycosphingolipids and their potential biosynthetic precursors systematically. Using orthogonal information such as RT and CCS helped filter false positive results. With the detection in two different datasets, we demonstrate that these sphingolipids are a general part of the C. elegans lipidome.

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来源期刊
Metabolomics
Metabolomics 医学-内分泌学与代谢
CiteScore
6.60
自引率
2.80%
发文量
84
审稿时长
2 months
期刊介绍: Metabolomics publishes current research regarding the development of technology platforms for metabolomics. This includes, but is not limited to: metabolomic applications within man, including pre-clinical and clinical pharmacometabolomics for precision medicine metabolic profiling and fingerprinting metabolite target analysis metabolomic applications within animals, plants and microbes transcriptomics and proteomics in systems biology Metabolomics is an indispensable platform for researchers using new post-genomics approaches, to discover networks and interactions between metabolites, pharmaceuticals, SNPs, proteins and more. Its articles go beyond the genome and metabolome, by including original clinical study material together with big data from new emerging technologies.
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