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Nuclear Lipid Microdomains Regulate Daunorubicin Resistance in Hepatoma Cells
Michela Codini1, Carmela Conte2, Samuela Cataldi3
1Department of Pharmaceutical Sciences, University of Perugia, 06126 Perugia, Italy. michela.codini@unipg.it.
Abstract:
Daunorubicin is an anticancer drug, and cholesterol is involved in cancer progression, but their relationship has not been defined. In this study, we developed a novel experimental model that utilizes daunorubicin, cholesterol, and daunorubicin plus cholesterol in the same cells (H35) to search for the role of nuclear lipid microdomains, rich in cholesterol and sphingomyelin, in drug resistance. We find that the daunorubicin induces perturbation of nuclear lipid microdomains, localized in the inner nuclear membrane, where active chromatin is anchored. As changes of sphingomyelin species in nuclear lipid microdomains depend on neutral sphingomyelinase activity, we extended our studies to investigate whether the enzyme is modulated by daunorubicin. Indeed the drug stimulated the sphingomyelinase activity that induced reduction of saturated long chain fatty acid sphingomyelin species in nuclear lipid microdomains. Incubation of untreated-drug cells with high levels of cholesterol resulted in the inhibition of sphingomyelinase activity with increased saturated fatty acid sphingomyelin species. In daunodubicin-treated cells, incubation with cholesterol reversed the action of the drug by acting via neutral sphingomyelinase. In conclusion, we suggest that cholesterol and sphingomyelin-forming nuclear lipid microdomains are involved in the drug resistance.
Insights
This study reveals how cholesterol and sphingomyelin in nuclear lipid microdomains influence anticancer drug resistance. High cholesterol levels can reverse daunorubicin
Area of Science:
- Cell Biology
- Cancer Research
- Biochemistry
Background:
- Daunorubicin is a key anticancer drug.
- Cholesterol plays a role in cancer progression.
- The interplay between daunorubicin, cholesterol, and drug resistance remains unclear.
Purpose of the Study:
- To investigate the role of nuclear lipid microdomains in daunorubicin resistance.
- To explore the relationship between cholesterol, sphingomyelin, and drug resistance mechanisms.
Main Methods:
- Development of a novel experimental model using H35 cells with daunorubicin and/or cholesterol.
- Analysis of nuclear lipid microdomains, focusing on cholesterol and sphingomyelin.
- Assay of neutral sphingomyelinase activity in response to daunorubicin and cholesterol.
Main Results:
- Daunorubicin perturbs nuclear lipid microdomains, reducing saturated fatty acid sphingomyelin species.
- Cholesterol inhibits neutral sphingomyelinase activity, increasing saturated fatty acid sphingomyelin species.
- Cholesterol counteracts daunorubicin's effects by modulating neutral sphingomyelinase activity.
Conclusions:
- Nuclear lipid microdomains, rich in cholesterol and sphingomyelin, are implicated in anticancer drug resistance.
- Cholesterol and sphingomyelin dynamics within these microdomains are critical for modulating drug response.
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