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HMGCS2 Mediation of Ketone Levels Affects Sorafenib Treatment Efficacy in Liver Cancer Cells
Fat-Moon Suk1,2, Chien-Ying Wu3, Wan-Chun Chiu4,5,6
1Division of Gastroenterology, Department of Internal Medicine, Wan Fang Hospital, Taipei Medical University, Taipei 11696, Taiwan.
Abstract:
Primary liver cancer is the fifth leading death of cancers in men, and hepatocellular carcinoma (HCC) accounts for approximately 90% of all primary liver cancer cases. Sorafenib is a first-line drug for advanced-stage HCC patients. Sorafenib is a multi-target kinase inhibitor that blocks tumor cell proliferation and angiogenesis. Despite sorafenib treatment extending survival, some patients experience side effects, and sorafenib resistance does occur. 3-Hydroxymethyl glutaryl-CoA synthase 2 (HMGCS2) is the rate-limiting enzyme for ketogenesis, which synthesizes the ketone bodies, β-hydroxybutyrate (β-HB) and acetoacetate (AcAc). β-HB is the most abundant ketone body which is present in a 4:1 ratio compared to AcAc. Recently, ketone body treatment was found to have therapeutic effects against many cancers by causing metabolic alternations and cancer cell apoptosis. Our previous publication showed that HMGCS2 downregulation-mediated ketone body reduction promoted HCC clinicopathological progression through regulating c-Myc/cyclin D1 and caspase-dependent signaling. However, whether HMGCS2-regulated ketone body production alters the sensitivity of human HCC to sorafenib treatment remains unclear. In this study, we showed that HMGCS2 downregulation enhanced the proliferative ability and attenuated the cytotoxic effects of sorafenib by activating expressions of phosphorylated (p)-extracellular signal-regulated kinase (ERK), p-P38, and p-AKT. In contrast, HMGCS2 overexpression decreased cell proliferation and enhanced the cytotoxic effects of sorafenib in HCC cells by inhibiting ERK activation. Furthermore, we showed that knockdown HMGCS2 exhibited the potential migratory ability, as well as decreasing zonula occludens protein (ZO)-1 and increasing c-Myc expression in both sorafenib-treated Huh7 and HepG2 cells. Although HMGCS2 overexpression did not alter the migratory effect, expressions of ZO-1, c-Myc, and N-cadherin decreased in sorafenib-treated HMGCS2-overexpressing HCC cells. Finally, we investigated whether ketone treatment influences sorafenib sensitivity. We showed that β-HB pretreatment decreased cell proliferation and enhanced antiproliferative effect of sorafenib in both Huh7 and HepG2 cells. In conclusion, this study defined the impacts of HMGCS2 expression and ketone body treatment on influencing the sorafenib sensitivity of liver cancer cells.
Insights
Hepatocellular carcinoma (HCC) progression is linked to 3-Hydroxymethyl glutaryl-CoA synthase 2 (HMGCS2) levels. HMGCS2 impacts sorafenib effectiveness, and ketone body treatment may enhance HCC treatment sensitivity.
Area of Science:
- Biochemistry
- Oncology
- Metabolic pathways
Background:
- Primary liver cancer, particularly hepatocellular carcinoma (HCC), is a major cause of cancer-related death.
- Sorafenib is a standard first-line treatment for advanced HCC, but resistance and side effects limit its efficacy.
- 3-Hydroxymethyl glutaryl-CoA synthase 2 (HMGCS2) regulates ketogenesis, and its role in HCC progression and sorafenib sensitivity is not fully understood.
Purpose of the Study:
- To investigate the impact of HMGCS2 expression on HCC cell proliferation and sensitivity to sorafenib.
- To determine how HMGCS2-regulated ketone body production influences HCC cell behavior and response to sorafenib.
- To evaluate the therapeutic potential of ketone body treatment in combination with sorafenib for HCC.
Main Methods:
- HMGCS2 expression was manipulated (downregulation and overexpression) in HCC cell lines (Huh7 and HepG2).
- Cell proliferation, cytotoxicity, migration, and expression of key signaling proteins (p-ERK, p-P38, p-AKT, ZO-1, c-Myc, N-cadherin) were assessed.
- HCC cells were pretreated with β-hydroxybutyrate (β-HB) before sorafenib treatment to evaluate combined effects.
Main Results:
- HMGCS2 downregulation increased HCC cell proliferation and reduced sorafenib sensitivity by activating ERK, P38, and AKT signaling pathways.
- HMGCS2 overexpression decreased proliferation and enhanced sorafenib efficacy by inhibiting ERK activation.
- Knockdown of HMGCS2 promoted migration and altered ZO-1 and c-Myc expression, while overexpression affected ZO-1, c-Myc, and N-cadherin expression in sorafenib-treated cells.
- β-HB pretreatment reduced HCC cell proliferation and enhanced sorafenib's antiproliferative effects.
Conclusions:
- HMGCS2 expression levels significantly influence HCC cell proliferation and sensitivity to sorafenib.
- Modulating HMGCS2 expression and utilizing ketone body treatments like β-HB show promise for improving sorafenib efficacy in HCC.
- These findings highlight HMGCS2 and ketogenesis as potential therapeutic targets for overcoming sorafenib resistance in liver cancer.
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