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USP14 Regulates Cancer Cell Growth in a Fatty Acid Synthase-Independent Manner
Ji Su Yang1,2, Naeun Yoon1,3, Mingyu Kong1,4
1Molecular Recognition Research Center, Korea Institute of Science and Technology, Seoul 02792, Korea.
Abstract:
Fatty acid synthase (FASN) plays an important role in cancer development, providing excess lipid sources for cancer growth by participating in de novo lipogenesis. Although several inhibitors of FASN have been developed, there are many limitations to using FASN inhibitors alone as cancer therapeutics. We therefore attempted to effectively inhibit cancer cell growth by using a FASN inhibitor in combination with an inhibitor of a deubiquitinating enzyme USP14, which is known to maintain FASN protein levels in hepatocytes. However, when FASN and USP14 were inhibited together, there were no synergistic effects on cancer cell death compared to inhibition of FASN alone. Surprisingly, USP14 rather reduced the protein levels and activity of FASN in cancer cells, although it slightly inhibited the ubiquitination of FASN. Indeed, treatment of an USP14 inhibitor IU1 did not significantly affect FASN levels in cancer cells. Furthermore, from an analysis of metabolites involved in lipid metabolism, metabolite changes in IU1-treated cells were significantly different from those in cells treated with a FASN inhibitor, Fasnall. These results suggest that FASN may not be a direct substrate of USP14 in the cancer cells. Consequently, we demonstrate that USP14 regulates proliferation of the cancer cells in a fatty acid synthase-independent manner, and targeting USP14 in combination with FASN may not be a viable method for effective cancer treatment.
Insights
Combining fatty acid synthase (FASN) inhibitors with USP14 inhibitors did not enhance cancer cell death. USP14 regulates cancer cell proliferation independently of FASN, suggesting this combination therapy is not viable.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Fatty acid synthase (FASN) is crucial for cancer growth, supplying lipids via de novo lipogenesis.
- FASN inhibitors show limitations as standalone cancer therapeutics.
- USP14 deubiquitinating enzyme is known to regulate FASN protein levels in hepatocytes.
Purpose of the Study:
- To investigate the synergistic effects of combined FASN and USP14 inhibition on cancer cell growth.
- To determine if USP14 inhibition can enhance the efficacy of FASN inhibitors in cancer treatment.
Main Methods:
- Inhibition of FASN and USP14 in cancer cells.
- Assessment of cancer cell death and proliferation.
- Analysis of FASN protein levels, activity, and ubiquitination.
- Metabolomic analysis of lipid metabolism.
Main Results:
- Combined FASN and USP14 inhibition showed no synergistic effect on cancer cell death compared to FASN inhibition alone.
- USP14 inhibition reduced FASN protein levels and activity in cancer cells, despite minimal impact on FASN ubiquitination.
- USP14 inhibitor IU1 did not significantly alter FASN levels in cancer cells.
- Metabolite profiles differed significantly between USP14 inhibitor and FASN inhibitor treatments.
- FASN did not appear to be a direct substrate of USP14 in cancer cells.
Conclusions:
- USP14 regulates cancer cell proliferation independently of FASN.
- Targeting USP14 in combination with FASN is unlikely to be an effective cancer treatment strategy.
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