4.8 Article

A reactivity-based probe of the intracellular labile ferrous iron pool

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NATURE CHEMICAL BIOLOGY
卷 12, 期 9, 页码 680-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/nchembio.2116

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  1. US National Institutes of Health (NIH) [AI105106]
  2. NIH [GM 79465]
  3. NIH Research Training Grant in Chemistry and Chemical Biology [T32 GM064337]

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Improved methods for studying intracellular reactive Fe(II) are of significant interest for studies of iron metabolism and disease-relevant changes in iron homeostasis. Here we describe a highly selective reactivity-based probe in which a Fenton-type reaction with intracellular labile Fe(II) leads to unmasking of the aminonucleoside puromycin. Puromycin leaves a permanent and dose-dependent mark on treated cells that can be detected with high sensitivity and precision using a high-content, plate-based immunofluorescence assay. Using this new probe and screening approach, we detected alteration of cellular labile Fe(II) in response extracellular iron conditioning, overexpression of iron storage and/or export proteins, and post-translational regulation of iron export. We also used this new tool to demonstrate that labile Fe(II) pools are larger in cancer cells than in nontumorigenic cells.

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