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Published on: November 15, 2013
Liver X Receptor Ligand GAC0001E5 Downregulates Antioxidant Capacity and ERBB2/HER2 Expression in HER2-Positive
Asitha Premaratne1, Shinjini Basu1, Abhinav Bagchi1
1Center for Nuclear Receptors and Cell Signaling, Department of Biology and Biochemistry, University of Houston, Houston, TX 77004, USA.
Abstract:
The HER2-positive subtype accounts for approximately one-fifth of all breast cancers. Insensitivity and development of acquired resistance to targeted therapies in some patients contribute to their poor prognosis. HER2 overexpression is associated with metabolic reprogramming, facilitating cancer cell growth and survival. Novel liver X receptor (LXR) ligand GAC0001E5 (1E5) has been shown to inhibit cancer cell proliferation by disrupting glutaminolysis and inducing oxidative stress. In this study, HER2-positive breast cancer cells were treated with 1E5 to determine their potential inhibitory effects and mechanisms of action in HER2-positive breast cancers. Similar to previous observations in other cancer types, 1E5 treatments inhibited LXR activity, expression, and cancer cell proliferation. Expression of fatty acid synthesis genes, including fatty acid synthase (FASN), was downregulated following 1E5 treatment, and results from co-treatment experiments with an FASN inhibitor suggest that the same pathway is targeted by 1E5. Treatments with 1E5 disrupted glutaminolysis and resulted in increased oxidative stress. Strikingly, HER2 transcript and protein levels were both significantly downregulated by 1E5. Taken together, these findings indicate the therapeutic potential of targeting HER2 overexpression and associated metabolic reprogramming via the modulation of LXR in HER2-positive breast cancers.
Insights
A novel liver X receptor (LXR) ligand, GAC0001E5 (1E5), inhibits HER2-positive breast cancer cell growth by disrupting metabolism and downregulating HER2. This suggests LXR modulation as a potential therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- HER2-positive breast cancer accounts for ~20% of cases, often exhibiting resistance to therapies.
- Metabolic reprogramming in HER2-positive cancers fuels growth and survival.
- Targeting metabolic pathways offers a promising therapeutic avenue.
Purpose of the Study:
- To investigate the inhibitory effects and mechanisms of the novel liver X receptor (LXR) ligand GAC0001E5 (1E5) in HER2-positive breast cancer cells.
- To explore 1E5's impact on LXR activity, metabolic pathways, and HER2 expression.
Main Methods:
- Treatment of HER2-positive breast cancer cells with 1E5.
- Assessment of LXR activity and expression.
- Analysis of fatty acid synthesis gene expression (e.g., FASN).
- Evaluation of glutaminolysis, oxidative stress, and HER2 transcript/protein levels.
Main Results:
- 1E5 inhibited LXR activity, expression, and cancer cell proliferation.
- 1E5 downregulated fatty acid synthesis genes, including FASN, suggesting pathway targeting.
- Treatments disrupted glutaminolysis, increased oxidative stress, and significantly reduced HER2 expression.
- Co-treatment with an FASN inhibitor supported the targeted pathway.
Conclusions:
- 1E5 demonstrates therapeutic potential against HER2-positive breast cancer by targeting LXR and associated metabolic reprogramming.
- Modulating LXR offers a novel strategy to overcome resistance and treat HER2-positive breast cancers.
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