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Published on: May 10, 2024
Loss of RNF43 Function Contributes to Gastric Carcinogenesis by Impairing DNA Damage Response
Victoria Neumeyer1, Anna Brutau-Abia1, Michael Allgäuer1
1Institute for Medical Microbiology, Immunology and Hygiene, School of Medicine, Technical University of Munich, Munich, Germany.
Background & Aims:
RING finger protein 43 (RNF43) is a tumor suppressor that frequently is mutated in gastric tumors. The link between RNF43 and modulation of Wingless-related integration site (WNT) signaling has not been shown clearly in the stomach. Because mutations in RNF43 are highly enriched in microsatellite-unstable gastric tumors, which show defects in DNA damage response (DDR), we investigated whether RNF43 is involved in DDR in the stomach.
Methods:
DDR activation and cell viability upon γ-radiation was analyzed in gastric cells where expression of RNF43 was depleted. Response to chemotherapeutic agents 5-fluorouracil and cisplatin was analyzed in gastric cancer cell lines and xenograft tumors. In addition, involvement of RNF43 in DDR activation was analyzed upon Helicobacter pylori infection in wild-type and Rnf43ΔEx8 mice. Furthermore, a cohort of human gastric biopsy specimens was analyzed for RNF43 expression and mutation status as well as for activation of DDR.
Results:
RNF43 depletion conferred resistance to γ-radiation and chemotherapy by dampening the activation of DDR, thereby preventing apoptosis in gastric cells. Upon Helicobacter pylori infection, RNF43 loss of function reduced activation of DDR and apoptosis. Furthermore, RNF43 expression correlated with DDR activation in human gastric biopsy specimens, and RNF43 mutations found in gastric tumors conferred resistance to DNA damage. When exploring the molecular mechanisms behind these findings, a direct interaction between RNF43 and phosphorylated H2A histone family member X (γH2AX) was observed.
Conclusions:
We identified a novel function for RNF43 in the stomach as a regulator of DDR. Loss of RNF43 function in gastric cells confers resistance to DNA damage-inducing radiotherapy and chemotherapy, suggesting RNF43 as a possible biomarker for therapy selection.
Insights
RING finger protein 43 (RNF43) loss in gastric cells confers resistance to DNA damage treatments by dampening DNA damage response (DDR). This suggests RNF43 mutations may predict therapy response in gastric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Gastroenterology
Background:
- RING finger protein 43 (RNF43) is a tumor suppressor frequently mutated in gastric cancer.
- RNF43's role in Wingless-related integration site (WNT) signaling in the stomach is unclear.
- RNF43 mutations are enriched in microsatellite-unstable gastric tumors with DNA damage response (DDR) defects.
Purpose of the Study:
- Investigate RNF43's involvement in DNA damage response (DDR) in gastric cells.
- Determine if RNF43 influences gastric cancer cell sensitivity to DNA damage-inducing agents.
- Explore RNF43's role in DDR activation during Helicobacter pylori infection.
Main Methods:
- Analyzed DDR activation and cell viability in RNF43-depleted gastric cells upon gamma-radiation.
- Assessed response to 5-fluorouracil and cisplatin in gastric cancer cell lines and xenografts.
- Studied RNF43's role in DDR activation following H. pylori infection in mice.
- Correlated RNF43 expression/mutation status with DDR activation in human gastric biopsies.
Main Results:
- RNF43 depletion conferred resistance to gamma-radiation and chemotherapy by reducing DDR activation and apoptosis.
- Loss of RNF43 function decreased DDR activation and apoptosis upon H. pylori infection.
- RNF43 expression correlated with DDR activation in human gastric biopsies; RNF43 mutations conferred DNA damage resistance.
- Direct interaction observed between RNF43 and phosphorylated H2A histone family member X (γH2AX).
Conclusions:
- RNF43 acts as a novel regulator of DNA damage response (DDR) in the stomach.
- Loss of RNF43 function in gastric cells confers resistance to radiotherapy and chemotherapy.
- RNF43 may serve as a potential biomarker for selecting DNA damage-inducing therapies in gastric cancer.
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