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用于功能脂质和通路分析的高覆盖度脂质组学

High-coverage lipidomics for functional lipid and pathway analyses.

作者信息

Lam Sin Man, Wang Zehua, Li Bowen, Shui Guanghou

机构信息

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, People's Republic of China; Lipidall Technologies Company Limited, Changzhou, 213022, Jiangsu Province, People's Republic of China.

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, People's Republic of China; University of Chinese Academy of Sciences, Beijing, People's Republic of China.

出版信息

Anal Chim Acta. 2021 Feb 22;1147:199-210. doi: 10.1016/j.aca.2020.11.024. Epub 2020 Nov 25.

Abstract

Rapid advances in front-end separation approaches and analytical technologies have accelerated the development of lipidomics, particularly in terms of increasing analytical coverage to encompass an expanding repertoire of lipids within a single analytical approach. Developments in lipid pathway analysis, however, have somewhat lingered behind, primarily due to (1) the lack of coherent alignment between lipid identifiers in common databases versus that generated from experiments, owing to the differing structural resolution of lipids at molecular level that is specific to the analytical approaches adopted by various laboratories; (2) the immense complexity of lipid metabolic relationships that may entail head group changes, fatty acyls modifications of various forms (e.g. elongation, desaturation, oxidation), as well as active remodeling that demands a multidimensional, panoramic view to take into account all possibilities in lipid pathway analyses. Herein, we discuss current efforts undertaken to address these challenges, as well as alternative form of "pathway analyses" that may be particularly useful for uncovering functional lipid interactions under different biological contexts. Consolidating lipid pathway analyses will be indispensable in facilitating the transition of lipidomics from its prior role of phenotype validation to a hypothesis-generating tool that uncovers novel molecular targets to drive downstream mechanistic pursuits under biomedical settings.

摘要

前端分离方法和分析技术的快速发展加速了脂质组学的发展,特别是在提高分析覆盖范围方面,以便在单一分析方法中涵盖不断扩大的脂质种类。然而,脂质途径分析的发展在一定程度上滞后了,主要原因如下:(1)由于不同实验室采用的分析方法在分子水平上对脂质结构解析的差异,常见数据库中的脂质标识符与实验产生的脂质标识符之间缺乏一致的对应关系;(2)脂质代谢关系极其复杂,可能涉及头部基团变化、各种形式的脂肪酰基修饰(如延长、去饱和、氧化),以及需要多维全景视角来考虑脂质途径分析中所有可能性的活性重塑。在此,我们讨论了为应对这些挑战而开展的当前工作,以及一种可能对揭示不同生物学背景下功能性脂质相互作用特别有用的“途径分析”替代形式。整合脂质途径分析对于促进脂质组学从其先前的表型验证角色转变为一种假设生成工具至关重要,该工具能够揭示新的分子靶点,以推动生物医学环境下的下游机制研究。

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