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Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
Canonical Wnt Signaling Remodels Lipid Metabolism in Zebrafish Hepatocytes following Ras Oncogenic Insult
Yuxiao Yao1,2, Shaoyang Sun1, Jingjing Wang1
1Key Laboratory of Metabolism and Molecular Medicine, Ministry of Education, Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Fudan University, Shanghai, China.
Abstract:
There is limited understanding of the effects of major oncogenic pathways and their combinatorial actions on lipid composition and transformation during hepatic tumorigenesis. Here, we report a negative correlation of Wnt/Myc activity with steatosis in human hepatocellular carcinoma (HCC) and perform in vivo functional studies using three conditional transgenic zebrafish models. Double-transgenic zebrafish larvae conditionally expressing human CTNNB1 and zebrafish tcf7l2 or murine Myc together with kras in hepatocytes led to severe hepatomegaly and significantly attenuated accumulation of lipid droplets and cell senescence triggered by kras expression alone. UPLC-MS-based, nontargeted lipidomic profiling and transcriptome analyses revealed that Wnt/Myc activity promotes triacylglycerol to phospholipid transformation and increases unsaturated fatty acyl groups in phospholipids in a Ras-dependent manner. Small-scale screenings suggested that supplementation of certain free fatty acids (FA) or inhibition of FA desaturation significantly represses hepatic hyperplasia of double-transgenic larvae and proliferation of three human HCC cells with and without sorafenib. Together, our studies reveal novel Ras-dependent functions of Wnt signaling in remodeling the lipid metabolism of cancerous hepatocytes in zebrafish and identify the SCD inhibitor MK8245 as a candidate drug for therapeutic intervention.Significance: These findings identify FA desaturation as a significant downstream therapeutic target for antagonizing the combinatorial effects of Wnt and Ras signaling pathways in hepatocellular carcinoma.Graphical Abstract: http://cancerres.aacrjournals.org/content/canres/78/19/5548/F1.large.jpg Cancer Res; 78(19); 5548-60. ©2018 AACR.
Insights
Wnt/Myc signaling alters lipid metabolism in liver cancer by promoting fat transformation and increasing unsaturated fatty acids. Inhibiting fatty acid desaturation offers a therapeutic strategy for hepatocellular carcinoma.
Area of Science:
- Hepatocellular carcinoma (HCC) research
- Cancer biology
- Lipid metabolism in cancer
Background:
- Limited understanding of oncogenic pathway interactions in liver cancer lipid changes.
- Observed negative correlation between Wnt/Myc activity and steatosis in human HCC.
Purpose of the Study:
- Investigate the combinatorial effects of oncogenic pathways on lipid composition during hepatic tumorigenesis.
- Elucidate the role of Wnt/Myc and Ras signaling in regulating lipid metabolism in HCC.
Main Methods:
- Utilized conditional transgenic zebrafish models for in vivo studies.
- Performed UPLC-MS-based lipidomic profiling and transcriptome analysis.
- Screened fatty acid supplementation and inhibition of fatty acid desaturation.
Main Results:
- Wnt/Myc activity, in a Ras-dependent manner, promotes triacylglycerol to phospholipid transformation and increases unsaturated fatty acyl groups.
- Combined Wnt/Myc and Kras expression in zebrafish led to severe hepatomegaly with attenuated lipid droplet accumulation.
- Inhibition of fatty acid desaturation repressed hepatic hyperplasia and HCC cell proliferation.
Conclusions:
- Wnt signaling exhibits novel Ras-dependent functions in remodeling lipid metabolism in cancerous hepatocytes.
- Fatty acid desaturation is a significant therapeutic target for hepatocellular carcinoma.
- SCD inhibitor MK8245 shows potential as a therapeutic intervention.
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