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Updated: Oct 21, 2025

Exploring the Regulation of Lipid Droplet Catabolism through Lipophagy
Published on: January 31, 2025
Lipidomic profiling reveals lipid regulation by a novel LSD1 inhibitor treatment
Yan Li1, Xinying Qian2, Yiyun Lin2
1Department of Pharmacology, Shanxi Medical University, Taiyuan, Shanxi 030001, P.R. China.
Abstract:
Lipid metabolic alterations are associated with cancer progression. Lysine‑specific demethylase 1 (LSD1) plays a crucial role in cancer and has become a promising target for cancer therapy. However, the effect of LSD1 on lipid metabolism remains unclear. In the present study, we used a LC‑MS/MS‑based lipidomics approach to investigate the impact of LSD1 on cancer cell lipid metabolism using ZY0511, a specific LSD1 inhibitor developed by our group as a specific probe. ZY0511 profoundly modified the human colorectal and cervical cancer cell lipid metabolism. A total of 256 differential metabolites were identified in HeLa cells, and 218 differential metabolites were identified in HCT116 cells, respectively. Among these lipid metabolites, phosphatidylserine, phosphatidylethanolamine, phosphatidylcholine and sphingomyelin (SM) were downregulated by ZY0511. In contrast, ceramide (Cer) and a small portion of glycerophospholipids such as phosphatidylinositol and phosphatidylethanolamine were upregulated by ZY0511. These results revealed a disturbance in sphingolipids (SPs) and glycerophospholipids, which may be correlated with the progression of cancer. Furthermore, a marked increase in Cer and prominent decrease in SM were consistent with the upregulated expression of key enzymes in the Cer synthesis process including de novo synthesis, hydrolysis of SM and the salvage pathway after ZY0511 exposure. In conclusion, our research reveals a link between LSD1 and lipid metabolism in cancer cells, offering more comprehensive evidence for the application of LSD1 inhibitors for cancer therapy. The underlying mechanisms of how the LSD1 inhibitor regulates lipid metabolism warrant further investigation.
Insights
Lysine-specific demethylase 1 (LSD1) inhibition alters cancer cell lipid metabolism, affecting sphingolipids and glycerophospholipids. This finding supports LSD1 inhibitors as a potential cancer therapy approach.
Area of Science:
- Oncology
- Biochemistry
- Metabolomics
Background:
- Lipid metabolism is altered in cancer progression.
- Lysine-specific demethylase 1 (LSD1) is a validated cancer target.
- The role of LSD1 in cancer lipid metabolism is largely unknown.
Purpose of the Study:
- To investigate the impact of LSD1 inhibition on cancer cell lipid metabolism.
- To identify specific lipid alterations induced by LSD1 inhibition.
- To explore the potential of LSD1 inhibitors in cancer therapy.
Main Methods:
- Utilized a liquid chromatography-tandem mass spectrometry (LC-MS/MS) based lipidomics approach.
- Employed ZY0511, a specific LSD1 inhibitor, as a chemical probe.
- Analyzed lipid profiles in human colorectal (HCT116) and cervical (HeLa) cancer cells.
Main Results:
- LSD1 inhibition profoundly altered cancer cell lipid metabolism.
- Significant changes in sphingolipids (SPs) and glycerophospholipids were observed.
- Downregulation of phosphatidylserine, phosphatidylethanolamine, phosphatidylcholine, and sphingomyelin (SM); upregulation of ceramide (Cer) and certain glycerophospholipids.
Conclusions:
- LSD1 inhibition disrupts cancer cell lipid metabolism, particularly sphingolipid and glycerophospholipid pathways.
- Increased ceramide and decreased sphingomyelin levels suggest alterations in ceramide synthesis.
- These findings provide evidence for targeting LSD1 in cancer therapy and warrant further mechanistic investigation.
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