Department of Chemistry, Graduate School of Science, and Integrated Research Consortium on Chemical Sciences (IRCCS), Nagoya University, Furo, Chikusa, Nagoya, 464-8602, Japan.
Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstraße 40, 48149, Münster, Germany.
Nat Commun. 2022 May 9;13(1):2533. doi: 10.1038/s41467-022-30153-6.
Metabolic distribution of fatty acid to organelles is an essential biological process for energy homeostasis as well as for the maintenance of membrane integrity, and the metabolic pathways are strictly regulated in response to environmental stimuli. Herein, we report a fluorescent fatty acid probe, which bears an azapyrene dye that changes its absorption and emission features depending on the microenvironment polarity of the organelle into which it is transported. Owing to the environmental sensitivity of this dye, the distribution of the metabolically incorporated probe in non-polar lipid droplets, medium-polarity membranes, and the polar aqueous regions, can be visualized in different colors. Based on density scatter plots of the fluorophore, we demonstrate that the degradation of triacylglycerols in lipid droplets occurs predominantly via lipolysis rather than lipophagy in nutrition-starved hepatocytes. This tool can thus be expected to significantly advance our understanding of the lipid metabolism in living organisms.
脂肪酸向细胞器的代谢分布是能量平衡以及维持膜完整性的重要生物学过程,并且代谢途径会严格响应环境刺激进行调节。在此,我们报告了一种荧光脂肪酸探针,它带有一个氮杂并苯染料,该染料的吸收和发射特征会根据其运输进入的细胞器的微环境极性而改变。由于这种染料对环境敏感,因此可以用不同颜色可视化代谢掺入的探针在非极性脂滴、中等极性膜和极性水相区域中的分布。基于荧光团的密度散射图,我们证明在营养饥饿的肝细胞中,脂滴中的三酰基甘油的降解主要通过脂肪分解而不是脂噬作用发生。因此,这种工具有望显著促进我们对活生物体中脂质代谢的理解。