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Reactive oxygen species dictate the apoptotic response of melanoma cells to TH588

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posted on 2025-05-09, 13:07 authored by Jia Yu Wang, Lei JinLei Jin, Ting La, Jennifer McFarlane, Fu Xi Lei, Hessam Tabatabaee, Jie Zhong Chen, Amanda CroftAmanda Croft, Chen Chen JiangChen Chen Jiang, Xu Dong ZhangXu Dong Zhang, Xu Yan, Simonne SherwinSimonne Sherwin, Margaret Farrelly, Yuanyuan ZhangYuanyuan Zhang, Fen Liu, Chun Yan Wang, Su Tang Guo, Hamed Yari
The effect of MTH1 inhibition on cancer cell survival has been elusive. Here we report that although silencing of MTH1 does not affect survival of melanoma cells, TH588, one of the first-in-class MTH1 inhibitors, kills melanoma cells through apoptosis independently of its inhibitory effect on MTH1. Induction of apoptosis by TH588 was not alleviated by MTH1 overexpression or introduction of the bacterial homolog of MTH1 that has 8-oxodGTPase activity but cannot be inhibited by TH588, indicating that MTH1 inhibition is not the cause of TH588-induced killing of melanoma cells. Although knockdown of MTH1 did not impinge on the viability of melanoma cells, it rendered melanoma cells sensitive to apoptosis induced by the oxidative stress inducer elesclomol. Of note, treatment with elesclomol also enhanced TH588-induced apoptosis, whereas a reactive oxygen species scavenger or an antioxidant attenuated the apoptosis triggered by TH588. Indeed, the sensitivity of melanoma cells to TH588 was correlated with endogenous levels of reactive oxygen species. Collectively, these results indicate that the cytotoxicity of TH588 toward melanoma cells is not associated with its inhibitory effect on MTH1, although it is mediated by cellular production of ROS.

Funding

NHMRC

1083496

1099946

History

Journal title

Journal of Investigative Dermatology

Volume

136

Issue

11

Pagination

2277-2286

Publisher

Nature Publishing Group

Place published

Oxford, UK

Language

  • en, English

College/Research Centre

Faculty of Health and Medicine

School

School of Biomedical Sciences and Pharmacy

Rights statement

© 2016 The Authors. Published by Elsevier, Inc. on behalf of the Society for Investigative Dermatology. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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