Targeting cuproptosis by zinc pyrithione in triple-negative breast cancer

Triple-negative breast cancer (TNBC) poses a considerable challenge due to its aggressive nature. Notably, metal ion-induced cell death, such as ferroptosis, has garnered significant attention and demonstrated potential implications for cancer. Recently, cuproptosis, a potent cell death pathway reli...

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Veröffentlicht in:iScience 2023-11, Vol.26 (11), p.108218-108218, Article 108218
Hauptverfasser: Yang, Xu, Deng, Li, Diao, Xianhong, Yang, Siyuan, Zou, Li, Yang, Qin, Li, Jian, Nie, Jianyun, Zhao, Lina, Jiao, Baowei
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Sprache:eng
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Zusammenfassung:Triple-negative breast cancer (TNBC) poses a considerable challenge due to its aggressive nature. Notably, metal ion-induced cell death, such as ferroptosis, has garnered significant attention and demonstrated potential implications for cancer. Recently, cuproptosis, a potent cell death pathway reliant on copper, has been identified. However, whether cuproptosis can be targeted for cancer treatment remains uncertain. Here, we screened the US Food and Drug Administration (FDA)-approved drug library and identified zinc pyrithione (ZnPT) as a compound that significantly inhibited TNBC progression. RNA sequencing revealed that ZnPT disrupted copper homeostasis. Furthermore, ZnPT facilitated the oligomerization of dihydrolipoamide S-acetyltransferase, a landmark molecule of cuproptosis. Clinically, high expression levels of cuproptosis-related proteins were significantly correlated with poor prognosis in TNBC patients. Collectively, these findings indicate that ZnPT can induce cell death by targeting and disrupting copper homeostasis, providing a potential experimental foundation for exploring cuproptosis as a target in drug discovery for TNBC patients. [Display omitted] •ZnPT induces cuproptosis by disrupting copper homeostasis and DLAT oligomerization•ZnPT induces cuproptosis in vivo and potentially contributes to chemosensitivity of TNBC•ZnPT inhibits progression and stemness of TNBC Molecular biology; Cell biology; Cancer
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2023.108218