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Identification and Quantification of Oxidized Lipids in LC-MS Lipidomics Data

机译:LC-MS脂质体数据中氧化脂质的鉴定和定量

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Changes in lipid homeostasis can lead to a plethora of diseases, raising the importance of reliable identification and measurement of lipids enabled by bioinformatics tools. However, due to the enormous diversity of lipids, most contemporary tools cover only a marginal range of lipid classes. To reduce such a shortcoming, this work extends the lipid species covered by Lipid Data Analyzer (LDA) to galactolipids and oxidized lipids. Appropriate mass lists were generated for MS' identifications and the proprietary decision rule sets were extended for MS2 identifications of the novel lipid classes. Furthermore, LDA was extended to enable identification of oxidatively modified fatty acyl chains. With these extensions, LDA can reliably identify the most important galactolipids as well as oxidatively modified versions of the 22 previously implemented lipid classes. Comparison with other up to date lipidomics tools show that LDA has a better coverage of the newly implemented lipid species. The extended version of LDA provides researchers with a powerful platform to elucidate diseases caused by perturbations in the oxidized lipidome. LDA is freely available from https://genome.tugraz.at/lda.
机译:脂质稳态的变化可以导致血清疾病,提高生物信息化工具使能可靠鉴定和测量的重要性。然而,由于脂质的巨大多样性,大多数现代工具仅覆盖了脂质类的边际范围。为了减少这种缺点,这项工作将脂质数据分析仪(LDA)覆盖的脂质物种延伸到加乳糖脂和氧化脂质。为MS'标识产生了适当的质量清单,并且为新型脂肪类的MS2识别延长了专有决策规则集。此外,LDA被扩展以使鉴定氧化改性的脂肪酰基链。利用这些延伸,LDA可以可靠地识别最重要的半乳糖以及22前面实施的脂质类的氧化修饰的版本。与其他迄今为止的脂质素学工具的比较表明,LDA对新实施的脂质物种具有更好的覆盖率。 LDA的扩展版本为研究人员提供了强大的平台,可阐明由氧化脂质组中的扰动引起的疾病。 LDA可从https://genome.tugraz.at/lda自由提供。

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