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Published on: January 26, 2024
Targeting Fatty Acid Reprogramming Suppresses CARM1-expressing Ovarian Cancer
Simona Lombardi1,2, Aaron R Goldman3, Hsin-Yao Tang3
1Immunology, Microenvironment and Metastasis Program, The Wistar Institute, Philadelphia, Pennsylvania.
Abstract:
The arginine methyltransferase CARM1 exhibits high expression levels in several human cancers, with the trend also observed in ovarian cancer. However, therapeutic approaches targeting tumors that overexpress CARM1 have not been explored. Cancer cells exploit metabolic reprogramming such as fatty acids for their survival. Here we report that CARM1 promotes monounsaturated fatty acid synthesis and fatty acid reprogramming represents a metabolic vulnerability for CARM1-expressing ovarian cancer. CARM1 promotes the expression of genes encoding rate-limiting enzymes of de novo fatty acid metabolism such as acetyl-CoA carboxylase 1 (ACC1) and fatty acid synthase (FASN). In addition, CARM1 upregulates stearoyl-CoA desaturase 1 (SCD1) that produces monounsaturated fatty acid by desaturation. Thus, CARM1 enhances de novo fatty acids synthesis which was subsequently utilized for synthesis of monounsaturated fatty acids. Consequently, inhibition of SCD1 suppresses the growth of ovarian cancer cells in a CARM1 status-dependent manner, which was rescued by the addition of monounsaturated fatty acids. Consistently, CARM1-expressing cells were more tolerant to the addition of saturated fatty acids. Indeed, SCD1 inhibition demonstrated efficacy against ovarian cancer in both orthotopic xenograft and syngeneic mouse models in a CARM1-dependent manner. In summary, our data show that CARM1 reprograms fatty acid metabolism and targeting SCD1 through pharmacological inhibition can serve as a potent therapeutic approach for CARM1-expressing ovarian cancers.
Significance:
CARM1 reprograms fatty acid metabolism transcriptionally to support ovarian cancer growth by producing monounsaturated fatty acids, supporting SCD1 inhibition as a rational strategy for treating CARM1-expressing ovarian cancer.
Insights
Arginine methyltransferase CARM1 drives ovarian cancer by reprogramming fatty acid synthesis. Inhibiting stearoyl-CoA desaturase 1 (SCD1) offers a targeted therapy for CARM1-expressing tumors.
Area of Science:
- Oncology
- Biochemistry
- Metabolic pathways
Background:
- Arginine methyltransferase CARM1 is highly expressed in human cancers, including ovarian cancer.
- Therapeutic strategies targeting CARM1-overexpressing tumors are underexplored.
- Cancer cells utilize metabolic reprogramming, particularly fatty acid metabolism, for survival.
Purpose of the Study:
- To investigate the role of CARM1 in ovarian cancer metabolism.
- To explore fatty acid reprogramming as a metabolic vulnerability in CARM1-expressing ovarian cancer.
- To evaluate the therapeutic potential of targeting CARM1-mediated metabolic alterations.
Main Methods:
- Analysis of CARM1 expression in ovarian cancer.
- Investigating CARM1's regulation of genes involved in de novo fatty acid synthesis (ACC1, FASN) and monounsaturated fatty acid production (SCD1).
- Inhibition of SCD1 in ovarian cancer cell lines and mouse models (orthotopic xenograft and syngeneic).
- Assessment of cell growth and tumor efficacy in relation to CARM1 status and fatty acid supplementation.
Main Results:
- CARM1 promotes de novo fatty acid synthesis and the production of monounsaturated fatty acids by upregulating ACC1, FASN, and SCD1.
- Inhibition of SCD1 suppressed ovarian cancer cell growth in a CARM1-dependent manner, with effects rescued by monounsaturated fatty acids.
- CARM1-expressing cells showed increased tolerance to saturated fatty acids.
- Pharmacological inhibition of SCD1 demonstrated efficacy in preclinical ovarian cancer models, dependent on CARM1 expression.
Conclusions:
- CARM1 reprograms fatty acid metabolism transcriptionally to support ovarian cancer growth by promoting monounsaturated fatty acid synthesis.
- Targeting SCD1 via pharmacological inhibition is a rational and potent therapeutic strategy for CARM1-expressing ovarian cancers.
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