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In vitro CRISPR screening uncovers CRTC3 as a regulator of IFN-γ-induced ferroptosis of hepatocellular carcinoma
Li Li1,2,3,4, Tao Xing5, Yiran Chen6
1Department of Immunology, Tianjin Medical University Cancer Institute and Hospital, National Clinical Research Center for Cancer, Tianjin, China.
Abstract:
Interferon-gamma (IFN-γ) exerts anti-tumor effects by inducing ferroptosis. Based on CRISPR/Cas9 knockout screening targeting genome-wide protein encoding genes in HepG2 and SK-Hep-1 cell lines, we found that cAMP response element-binding protein (CREB) regulated transcription coactivator 3 (CRTC3) protects tumor cells from drug-induced ferroptosis and significantly inhibits the efficacy of IFN-γ treatment in hepatocellular carcinoma (HCC). Mechanistically, CRTC3 knockout altered tumor cell lipid patterns and increased the abundance of polyunsaturated fatty acids (PUFAs), which enables lipid peroxidation and enhances the susceptibility of HCC cells to ferroptosis inducers. To scavenge for accumulated lipid peroxides (LPO) and maintain redox equilibrium, HCC cells up-regulate SLC7A11 and glutathione peroxidase 4 (GPx4) expressions to enhance the activities of glutamate-cystine antiporter (system xc-) and LPO clearance. As IFN-γ inhibiting system xc-, simultaneous treatment with IFN-γ disrupts the compensatory mechanism, and generates a synergistic effect with CRTC3 knockout to facilitate ferroptosis. Sensitizing effects of CRTC3 depletion were confirmed using typical ferroptosis inducers, including RSL3 and erastin. Sorafeinib, a commonly used target drug in HCC, was repeatedly reported as a ferroptosis inducer. We then conducted both in vitro and vivo experiments and demonstrated that CRTC3 depletion sensitized HCC cells to sorafenib treatment. In conclusion, CRTC3 is involved in the regulation of PUFAs metabolism and ferroptosis. Targeting CRTC3 signaling in combination with ferroptosis inducers present a viable approach for HCC treatment and overcoming drug resistance.
Insights
CRTC3 protects cancer cells from ferroptosis, hindering interferon-gamma (IFN-γ) therapy in liver cancer. Depleting CRTC3 enhances ferroptosis, improving treatment efficacy with IFN-γ or sorafenib.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Interferon-gamma (IFN-γ) induces anti-tumor effects via ferroptosis.
- Hepatocellular carcinoma (HCC) cells exhibit resistance to ferroptosis-inducing therapies.
- Identifying mechanisms of resistance is crucial for improving HCC treatment.
Purpose of the Study:
- To investigate the role of CRTC3 in regulating ferroptosis in HCC.
- To determine if CRTC3 inhibition can sensitize HCC cells to ferroptosis inducers and IFN-γ.
- To explore the potential of targeting CRTC3 for HCC treatment.
Main Methods:
- CRISPR/Cas9 genome-wide knockout screening in HCC cell lines (HepG2, SK-Hep-1).
- Analysis of lipid metabolism, polyunsaturated fatty acids (PUFAs), and lipid peroxides (LPO).
- Assessment of SLC7A11, GPx4 expression, and system xc- activity.
- In vitro and in vivo experiments using ferroptosis inducers (RSL3, erastin) and sorafenib.
Main Results:
- CRTC3 knockout sensitized HCC cells to ferroptosis by increasing PUFAs and LPO.
- CRTC3 depletion enhanced the anti-tumor effects of IFN-γ by disrupting compensatory mechanisms.
- CRTC3 depletion sensitized HCC cells to sorafenib, a known ferroptosis inducer.
- CRTC3 regulates PUFAs metabolism and ferroptosis susceptibility in HCC.
Conclusions:
- CRTC3 acts as a protective factor against ferroptosis in HCC.
- Targeting CRTC3 signaling, in combination with ferroptosis inducers, offers a promising therapeutic strategy for HCC.
- This approach may help overcome drug resistance in hepatocellular carcinoma treatment.
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