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Published on: June 28, 2019
Dose dependent actions of LCL521 on acid ceramidase and key sphingolipid metabolites
Aiping Bai1, Alicja Bielawska1, Mehrdad Rahmaniyan2
1Department of Biochemistry & Molecular Biology, Medical University of South Carolina, 173 Ashley Ave., Charleston, SC 294255, United States; Lipidomics Shared Resources, Medical University of South Carolina, 173 Ashley Ave., Charleston, SC 29425, United States.
Abstract:
The function of acid ceramidase (ACDase), whose congenital deficiency leads to Farber disease, has been recognized to be vital to tumor cell biology, and inhibition of its activity may be beneficial in cancer therapy. Therefore, manipulation of the activity of this enzyme may have significant effect, especially on cancer cells. LCL521, Di-DMG-B13, is a lysosomotropic inhibitor of ACDase. Here we define complexities in the actions of LCL521 on ACDase. Systematic studies in MCF7 cells showed dose and time divergent action of LCL521 on ACDase protein expression and sphingolipid levels. Low dose of LCL521 (1 µM) effectively inhibited ACDase in cells, but the effects were transient. A higher dose of LCL521 (10 µM) caused a profound decrease of sphingosine and increase of ceramide, but additionally affected the processing and regeneration of the ACDase protein, with biphasic and reversible effects on the expression of ACDase, which paralleled the long term changes of cellular sphingosine and ceramide. Finally, the higher concentrations of LCL521 also inhibited Dihydroceramide desaturase (DES-1). In summary, LCL521 exhibits significant effects on ACDase in a dose and time dependent manner, but dose range and treatment time need to be paid attention to specify its future exploration on ACDase targeted cancer treatment.
Insights
LCL521 effectively inhibits acid ceramidase (ACDase) in cancer cells, but its effects on ACDase expression and sphingolipid levels are complex and depend on dose and time. Careful consideration of these factors is crucial for developing ACDase-targeted cancer therapies.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Acid ceramidase (ACDase) is crucial for tumor cell biology, and its inhibition shows promise for cancer therapy.
- Farber disease results from congenital deficiency of ACDase.
- LCL521 is a lysosomotropic inhibitor of ACDase.
Purpose of the Study:
- To elucidate the complex actions of LCL521 on ACDase.
- To investigate the dose- and time-dependent effects of LCL521 on ACDase activity, protein expression, and sphingolipid metabolism in cancer cells.
Main Methods:
- Systematic studies were conducted using MCF7 cells.
- LCL521 was administered at different doses (1 µM and 10 µM) and exposure times.
- ACDase protein expression, sphingolipid levels (sphingosine, ceramide), and Dihydroceramide desaturase (DES-1) activity were analyzed.
Main Results:
- Low-dose LCL521 (1 µM) transiently inhibited ACDase.
- High-dose LCL521 (10 µM) profoundly altered sphingosine and ceramide levels and affected ACDase protein processing and regeneration in a biphasic and reversible manner.
- High concentrations of LCL521 also inhibited DES-1.
Conclusions:
- LCL521 exhibits dose- and time-dependent effects on ACDase and sphingolipid metabolism.
- The optimal dose range and treatment duration for LCL521 require careful consideration for its application in ACDase-targeted cancer therapy.
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