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Publication : Restored iron transport by a small molecule promotes absorption and hemoglobinization in animals.

First Author  Grillo AS Year  2017
Journal  Science Volume  356
Issue  6338 Pages  608-616
PubMed ID  28495746 Mgi Jnum  J:243425
Mgi Id  MGI:5908478 Doi  10.1126/science.aah3862
Citation  Grillo AS, et al. (2017) Restored iron transport by a small molecule promotes absorption and hemoglobinization in animals. Science 356(6338):608-616
abstractText  Multiple human diseases ensue from a hereditary or acquired deficiency of iron-transporting protein function that diminishes transmembrane iron flux in distinct sites and directions. Because other iron-transport proteins remain active, labile iron gradients build up across the corresponding protein-deficient membranes. Here we report that a small-molecule natural product, hinokitiol, can harness such gradients to restore iron transport into, within, and/or out of cells. The same compound promotes gut iron absorption in DMT1-deficient rats and ferroportin-deficient mice, as well as hemoglobinization in DMT1- and mitoferrin-deficient zebrafish. These findings illuminate a general mechanistic framework for small molecule-mediated site- and direction-selective restoration of iron transport. They also suggest that small molecules that partially mimic the function of missing protein transporters of iron, and possibly other ions, may have potential in treating human diseases.
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