4.8 Article

Unique assembly of carbonylpyridinium and chromene reveals mitochondrial thiol starvation under ferroptosis and novel ferroptosis inducer

期刊

CHEMICAL SCIENCE
卷 13, 期 13, 页码 3706-3712

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2sc00328g

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资金

  1. National Natural Science Foundation of China [22077076, 22074084, 21878180]
  2. Shanxi Province 1331 Project Key Innovation Team Construction Plan Cultivation Team [2018-CT-1]
  3. Xiangyuan County Solid Waste Comprehensive Utilization Science and Technology Project [2018XYSDJS-05]
  4. Shanxi Collaborative Innovation Center of High Value-added Utilization of Coal-related Wastes [2015-10-B3]
  5. Key R&D Program of Shanxi Province [201803D421059, 201903D421069]
  6. Shanxi Province Science Foundation [201901D111012, 201901D111015]
  7. Key R&D and Transformation Plan of Qinghai Province [2020-GX-101]
  8. Scientific Instrument Center of Shanxi University [201512]

向作者/读者索取更多资源

Researchers developed a new probe CM-Mit for accurate detection of thiols in mitochondria. The probe has fast response and protein labeling ability, preventing diffusion out of the mitochondria, and can be used for drug screening and studying ferroptosis.
To reveal the delicate function of mitochondria, spatiotemporally precise detection tools remain highly desirable. However, current probes with positively charged warheads for targeting mitochondria diffuse out of the mitochondria as the potential of the mitochondrial membrane changes, which directly influences the accuracy of the detection. Herein, we assembled carbonylpyridinium and chromene to afford the probe CM-Mit. Following the ultrafast response to thiol and the dissociation of carbonylpyridinium, the formation of o-quinone methide from CM-Mit was proposed to label proteins, thus avoiding diffusion out of the mitochondria. Therefore, the accurate spatiotemporal detection of thiol in mitochondria was realized. With this excellent probe, ferroptosis inducers were proved to stimulate thiol starvation in mitochondria for the first time in cancer cells. Moreover, CM-Mit was used to screen a compound library developed in-house and the stemona alkaloid analog SA-11 was shown to induce ferroptosis in various cancer cell lines, including a drug-resistant one.

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