Suppr超能文献

功能代谢组学揭示了小分子代谢下的生化功能和相关机制。

FUNCTIONAL METABOLOMICS DECIPHER BIOCHEMICAL FUNCTIONS AND ASSOCIATED MECHANISMS UNDERLIE SMALL-MOLECULE METABOLISM.

机构信息

Laboratory for Functional Metabolomics Science, Key Laboratory of Systems Biomedicine (Ministry of Education), Shanghai Center for Systems Biomedicine, Shanghai Jiao Tong University, Shanghai, 200240, China.

Department of Pharmacognosy, College of Pharmacy, Heilongjiang University of Chinese Medicine, Harbin, 150040, China.

出版信息

Mass Spectrom Rev. 2020 Sep;39(5-6):417-433. doi: 10.1002/mas.21611. Epub 2019 Nov 4.

Abstract

Metabolism is the collection of biochemical reactions enabled by chemically diverse metabolites, which facilitate different physiological processes to exchange substances and synthesize energy in diverse living organisms. Metabolomics has emerged as a cutting-edge method to qualify and quantify the metabolites in different biological matrixes, and it has the extraordinary capacity to interrogate the biological significance that underlies metabolic modification and modulation. Liquid chromatography combined with mass spectrometry (LC/MS), as a robust platform for metabolomics analysis, has increased in popularity over the past 10 years due to its excellent sensitivity, throughput, and versatility. However, metabolomics investigation currently provides us with only phenotype data without revealing the biochemical functions and associated mechanisms. This limitation indeed weakens the core value of metabolomics data in a broad spectrum of the life sciences. In recent years, the scientific community has actively explored the functional features of metabolomics and translated this cutting-edge approach to be used to solve key multifaceted questions, such as disease pathogenesis, the therapeutic discovery of drugs, nutritional issues, agricultural problems, environmental toxicology, and microbial evolution. Here, we are the first to briefly review the history and applicable progression of LC/MS-based metabolomics, with an emphasis on the applications of metabolic phenotyping. Furthermore, we specifically highlight the next era of LC/MS-based metabolomics to target functional metabolomes, through which we can answer phenotype-related questions to elucidate biochemical functions and associated mechanisms implicated in dysregulated metabolism. Finally, we propose many strategies to enhance the research capacity of functional metabolomics by enabling the combination of contemporary omics technologies and cutting-edge biochemical techniques. The main purpose of this review is to improve the understanding of LC/MS-based metabolomics, extending beyond the conventional metabolic phenotype toward biochemical functions and associated mechanisms, to enhance research capability and to enlarge the applicable scope of functional metabolomics in small-molecule metabolism in different living organisms.

摘要

代谢是由化学多样性代谢物支持的生化反应的集合,这些代谢物促进了不同生理过程在不同生物体中的物质交换和能量合成。代谢组学已成为一种鉴定和定量不同生物基质中代谢物的前沿方法,它具有非凡的能力来探究代谢修饰和调节背后的生物学意义。液相色谱-质谱联用(LC/MS)作为代谢组学分析的强大平台,由于其出色的灵敏度、通量和多功能性,在过去 10 年中越来越受欢迎。然而,代谢组学研究目前仅提供表型数据,而没有揭示生化功能和相关机制。这种局限性确实削弱了代谢组学数据在广泛的生命科学中的核心价值。近年来,科学界积极探索代谢组学的功能特征,并将这一前沿方法转化为用于解决关键多方面问题的工具,如疾病发病机制、药物治疗发现、营养问题、农业问题、环境毒理学和微生物进化。在这里,我们首次简要回顾了基于 LC/MS 的代谢组学的历史和应用进展,重点介绍了代谢表型分析的应用。此外,我们特别强调了基于 LC/MS 的代谢组学的下一个时代,旨在靶向功能代谢组学,通过该方法我们可以回答与表型相关的问题,阐明与失调代谢相关的生化功能和相关机制。最后,我们提出了许多策略,通过结合当代组学技术和前沿生化技术来增强功能代谢组学的研究能力。本综述的主要目的是提高对基于 LC/MS 的代谢组学的理解,超越传统的代谢表型,深入了解生化功能和相关机制,增强研究能力,并扩大功能代谢组学在不同生物体中小分子代谢中的应用范围。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验