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Published on: April 25, 2018
Downregulation of thymidylate synthase and E2F1 by arsenic trioxide in mesothelioma
Sze-Kwan Lam1, Yuan-Yuan Li1, Chun-Yan Zheng1
1Division of Respiratory Medicine, Department of Medicine, The University of Hong Kong, Queen Mary Hospital, Hong Kong, SAR, P.R. China.
Abstract:
Malignant pleural mesothelioma is a global health issue. Arsenic trioxide (ATO) has been shown to suppress thymidylate synthase (TYMS) in lung adenocarcinoma and colorectal cancer, and induce apoptosis in acute promyelocytic leukemia. With TYMS as a putative therapeutic target, the effect of ATO in mesothelioma was therefore studied. A panel of 5 mesothelioma cell lines was used to study the effect of ATO on cell viability, protein expression, mRNA expression and TYMS activity by MTT assay, western blot, qPCR and tritium-release assay, respectively. The knockdown of TYMS and E2F1 was performed with a specific siRNA. Phosphatidylserine externalization and mitochondrial membrane depolarization were measured by Annexin V and JC-1 staining respectively. The in vivo effect of ATO was studied using a nude mouse xenograft model. Application of ATO demonstrated anticancer effects in the cell line model with clinically achievable concentrations. Downregulation of TYMS protein (except H226 cells and 1.25 µM ATO in H2052 cells) and mRNA expression (H28 cells), pRB1 (H28 cells) and E2F1 and TYMS activity (except H226 cells) were also evident. E2F1 knockdown decreased cell viability more significantly than TYMS knockdown. In general, thymidine kinase 1, ribonucleotide reductase M1, c-myc and skp2 were downregulated by ATO. p-c-Jun was downregulated in H28 cells while upregulated in 211H cells. Phosphatidylserine externalization, mitochondrial membrane depolarization, downregulation of Bcl-2 and Bcl-xL, and upregulation of Bak and cleaved caspase-3 were observed. In the H226 xenograft model, the relative tumor growth was aborted, and E2F1 was downregulated while cleaved caspase-3 was elevated and localized to the nucleus in the ATO treatment group. ATO has potent antiproliferative and cytotoxic effects in mesothelioma in vitro and in vivo, partially mediated through E2F1 targeting (less effect through TYMS targeting). There is sound scientific evidence to support the clinical application of ATO in treatment of mesothelioma.
Insights
Arsenic trioxide (ATO) shows potent anticancer effects against malignant pleural mesothelioma. It reduces cell viability and tumor growth by targeting E2F1, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Cancer Biology
- Pharmacology
Background:
- Malignant pleural mesothelioma is a significant global health concern.
- Arsenic trioxide (ATO) has demonstrated efficacy in other cancers by targeting thymidylate synthase (TYMS) and inducing apoptosis.
- TYMS is a potential therapeutic target for mesothelioma.
Purpose of the Study:
- To investigate the anticancer effects of Arsenic trioxide (ATO) in malignant pleural mesothelioma.
- To evaluate ATO's impact on cell viability, protein and mRNA expression, and TYMS activity in mesothelioma cell lines.
- To assess ATO's in vitro and in vivo efficacy and its underlying molecular mechanisms.
Main Methods:
- Utilized MTT assays, western blotting, qPCR, and tritium-release assays to assess ATO's effects on 5 mesothelioma cell lines.
- Employed siRNA for knockdown of TYMS and E2F1.
- Analyzed phosphatidylserine externalization and mitochondrial membrane depolarization using Annexin V and JC-1 staining.
- Evaluated in vivo efficacy using a nude mouse xenograft model.
Main Results:
- ATO demonstrated significant antiproliferative and cytotoxic effects in mesothelioma cell lines at clinically achievable concentrations.
- ATO downregulated TYMS, E2F1, pRB1, and other key proteins involved in cell proliferation (e.g., thymidine kinase 1, ribonucleotide reductase M1, c-myc, skp2).
- In vivo studies showed aborted tumor growth in the ATO-treated group, with E2F1 downregulation and increased cleaved caspase-3.
Conclusions:
- Arsenic trioxide (ATO) exhibits potent antiproliferative and cytotoxic effects against malignant pleural mesothelioma, both in vitro and in vivo.
- The therapeutic effects of ATO are partially mediated through targeting E2F1, with a lesser effect observed through TYMS targeting.
- These findings provide strong scientific evidence supporting the potential clinical application of ATO in mesothelioma treatment.
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