脂质体
脂类学
脂质代谢
磷脂
化学
生物化学
甘油
新陈代谢
脂滴
质谱法
脂肪酸
代谢途径
色谱法
膜
作者
Simin Cheng,Donghui Zhang,Jiaxin Feng,Qingyuan Hu,Aolei Tan,Zhuoning Xie,Qinhua Chen,Huimin Huang,Ying Wei,Zheng Ouyang,Xiaoxiao Ma
出处
期刊:Research
[AAAS00]
日期:2023-01-01
卷期号:6
被引量:7
标识
DOI:10.34133/research.0087
摘要
The study of lipid metabolism relies on the characterization of the lipidome, which is quite complex due to the structure variations of the lipid species. New analytical tools have been developed recently for characterizing fine structures of lipids, with C=C location identification as one of the major improvements. In this study, we studied the lipid metabolism reprograming by analyzing glycerol phospholipid compositions in breast cancer cell lines with structural specification extended to the C=C location level. Inhibition of the lipid desaturase, stearoyl-CoA desaturase 1, increased the proportion of n-10 isomers that are produced via an alternative fatty acid desaturase 2 pathway. However, there were different variations of the ratio of n-9/n-7 isomers in C18:1-containing glycerol phospholipids after stearoyl-CoA desaturase 1 inhibition, showing increased tendency in MCF-7 cells, MDA-MB-468 cells, and BT-474 cells, but decreased tendency in MDA-MB-231 cells. No consistent change of the ratio of n-9/n-7 isomers was observed in SK-BR-3 cells. This type of heterogeneity in reprogrammed lipid metabolism can be rationalized by considering both lipid desaturation and fatty acid oxidation, highlighting the critical roles of comprehensive lipid analysis in both fundamental and biomedical applications.
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