A histochemical approach to activity-based copper sensing reveals cuproplasia-dependent vulnerabilities in cancer

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2025-01-15 DOI:10.1073/pnas.2412816122
Marco S. Messina, Laura Torrente, Aidan T. Pezacki, Hanna I. Humpel, Erin L. Li, Sophia G. Miller, Odette Verdejo-Torres, Teresita Padilla-Benavides, Donita C. Brady, David W. Killilea, Alison N. Killilea, Martina Ralle, Nathan P. Ward, Jun Ohata, Gina M. DeNicola, Christopher J. Chang
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Abstract

Copper is an essential nutrient for sustaining vital cellular processes spanning respiration, metabolism, and proliferation. However, loss of copper homeostasis, particularly misregulation of loosely bound copper ions which are defined as the labile copper pool, occurs in major diseases such as cancer, where tumor growth and metastasis have a heightened requirement for this metal. To help decipher the role of copper in the etiology of cancer, we report a histochemical activity-based sensing approach that enables systematic, high-throughput profiling of labile copper status across many cell lines in parallel. Coppermycin-1 reacts selectively with Cu(I) to release puromycin, which is then incorporated into nascent peptides during protein translation, thus leaving a permanent and dose-dependent marker for labile copper that can be visualized with standard immunofluorescence assays. We showcase the utility of this platform for screening labile Cu(I) pools across the National Cancer Institute’s 60 (NCI-60) human tumor cell line panel, identifying cell types with elevated basal levels of labile copper. Moreover, we use Coppermycin-1 to show that lung cancer cells with heightened activation of nuclear factor-erythroid 2-related factor 2 (NRF2) possess lower resting labile Cu(I) levels and, as a result, have reduced viability when treated with a copper chelator. This work establishes that methods for labile copper detection can be used to assess cuproplasia, an emerging form of copper-dependent cell growth and proliferation, providing a starting point for broader investigations into the roles of transition metal signaling in biology and medicine.
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基于活性的铜传感的组织化学方法揭示了癌症中铜增生依赖的脆弱性
铜是维持重要细胞过程的必需营养素,包括呼吸、代谢和增殖。然而,铜稳态的丧失,特别是被定义为不稳定铜池的松散结合铜离子的失调,发生在癌症等重大疾病中,肿瘤生长和转移对这种金属的需求增加。为了帮助破译铜在癌症病因学中的作用,我们报告了一种基于组织化学活性的传感方法,该方法可以系统地、高通量地分析许多细胞系中不稳定的铜状态。铜霉素-1选择性地与Cu(I)反应释放出嘌呤霉素,嘌呤霉素随后在蛋白质翻译过程中被整合到新生肽中,从而为不稳定的铜留下一个永久的剂量依赖性标记,可以用标准的免疫荧光法观察。我们展示了该平台在美国国家癌症研究所60个(NCI-60)人类肿瘤细胞系面板中筛选不稳定铜(I)池的效用,识别不稳定铜基础水平升高的细胞类型。此外,我们使用Coppermycin-1表明,具有核因子-红细胞2相关因子2 (NRF2)激活增强的肺癌细胞具有较低的静息不稳定Cu(I)水平,因此,当使用铜螯合剂处理时,其存活率降低。这项工作建立了不稳定铜检测方法可用于评估铜增生,铜增生是一种新兴的铜依赖性细胞生长和增殖形式,为更广泛地研究过渡金属信号在生物学和医学中的作用提供了起点。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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