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脑内皮细胞中的磷脂酰胆碱合成与重塑

Phosphatidylcholine synthesis and remodeling in brain endothelial cells.

作者信息

Yaghmour Mohamed H, Sajeevan Theja, Thiele Christoph, Kuerschner Lars

机构信息

LIMES Life and Medical Sciences Institute, University of Bonn, Bonn, Germany.

LIMES Life and Medical Sciences Institute, University of Bonn, Bonn, Germany.

出版信息

J Lipid Res. 2025 Apr;66(4):100773. doi: 10.1016/j.jlr.2025.100773. Epub 2025 Mar 10.

Abstract

Mammalian cells synthesize hundreds of different variants of their prominent membrane lipid phosphatidylcholine (PC), all differing in the side chain composition. This batch is constantly remodeled by the Lands cycle, a metabolic pathway replacing one chain at a time. Using the alkyne lipid lyso-phosphatidylpropargylcholine (LpPC), a precursor and intermediate in PC synthesis and remodeling, we study both processes in brain endothelial bEND3 cells. A novel method for multiplexed sample analysis by mass spectrometry is developed that offers high throughput and molecular species resolution of the propargyl-labeled PC lipids. Their time-resolved profiles and kinetic parameters of metabolism demonstrate the plasticity of the PC pool and the acute handling of lipid influx in endothelial cells differs from that in hepatocytes. Side chain remodeling as a form of lipid cycling adapts the PC pool to the cell's need and maintains lipid homeostasis. We estimate that endothelial cells possess the theoretical capacity to remodel up to 99% of their PC pool within 3.5 h using the Lands cycle. However, PC species are not subjected stochastically to this remodeling pathway as different species containing duplets of saturated, omega-3, and omega-6 side chains show different decay kinetics. Our findings emphasize the essential function of Lands cycling for monitoring and adapting the side chain composition of PC in endothelial cells.

摘要

哺乳动物细胞合成数百种其主要膜脂磷脂酰胆碱(PC)的不同变体,它们的侧链组成均不同。这一批次的PC通过兰兹循环不断重塑,这是一种一次替换一条链的代谢途径。我们使用炔烃脂质溶血磷脂酰炔丙基胆碱(LpPC),一种PC合成和重塑过程中的前体和中间体,来研究脑内皮bEND3细胞中的这两个过程。我们开发了一种通过质谱进行多重样品分析的新方法,该方法可提供炔丙基标记的PC脂质的高通量和分子种类分辨率。它们的时间分辨谱和代谢动力学参数表明,PC库具有可塑性,并且内皮细胞中脂质流入的急性处理方式与肝细胞不同。作为脂质循环形式的侧链重塑使PC库适应细胞需求并维持脂质稳态。我们估计,内皮细胞利用兰兹循环在3.5小时内理论上能够重塑高达99%的PC库。然而,PC种类并非随机地经历这种重塑途径,因为含有饱和、ω-3和ω-6侧链双链的不同种类显示出不同的衰变动力学。我们的研究结果强调了兰兹循环对于监测和调整内皮细胞中PC侧链组成的重要功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/497d/12002869/b4185969d578/gr3.jpg

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