脂质组学与细胞器脂质的时空分布
Lipidomics and temporal-spatial distribution of organelle lipid.
作者信息
Qian Wenjuan, Tang Huiru, Yao Hongyan
机构信息
State Key Laboratory of Genetic Engineering, School of Life Sciences, Human Phenome Institute, Metabonomics and Systems Biology Laboratory at Shanghai International Centre for Molecular Phenomics, Zhongshan Hospital, Fudan University, Shanghai 200032, China.
出版信息
J Biol Methods. 2025 Jan 16;12(1):e99010049. doi: 10.14440/jbm.2025.0094. eCollection 2025.
BACKGROUND
Lipids are crucial signaling molecules or cellular membrane components orchestrating biological processes. To gain insights into lipid functions and the communication between organelles, it is essential to understand the subcellular localization of individual lipids. Advancements in lipid quantification techniques, improvements in chemical and spatial resolution for detecting various lipid species, and enhancements in organelle isolation speed have allowed for profiling of the organelle lipidome, capturing its temporal-spatial distribution.
OBJECTIVE
This review examined approaches used to develop organelle lipidome and aimed to gain insights into cellular lipid homeostasis from an organelle perspective. In addition, this review discussed the advancements in lipid-mediated inter-organelle communication within complex physiological and pathological processes.
CONCLUSION
With the advancement of lipidomic technologies, more detailed explorations of organelle structures and the specific lipid-mediating functions they perform are feasible.
背景
脂质是协调生物过程的关键信号分子或细胞膜成分。为深入了解脂质功能以及细胞器之间的通讯,了解单个脂质的亚细胞定位至关重要。脂质定量技术的进步、检测各种脂质种类的化学和空间分辨率的提高以及细胞器分离速度的提升,使得对细胞器脂质组进行分析成为可能,从而捕捉其时空分布。
目的
本综述研究了用于开发细胞器脂质组的方法,旨在从细胞器角度深入了解细胞脂质稳态。此外,本综述还讨论了复杂生理和病理过程中脂质介导的细胞器间通讯的进展。
结论
随着脂质组学技术的进步,对细胞器结构及其执行的特定脂质介导功能进行更详细的探索是可行的。