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Publication : The protease DDI2 regulates NRF1 activation in response to cadmium toxicity.

First Author  Ribeiro ST Year  2022
Journal  iScience Volume  25
Issue  10 Pages  105227
PubMed ID  36248746 Mgi Jnum  J:330405
Mgi Id  MGI:7366630 Doi  10.1016/j.isci.2022.105227
Citation  Ribeiro ST, et al. (2022) The protease DDI2 regulates NRF1 activation in response to cadmium toxicity. iScience 25(10):105227
abstractText  DNA-damage inducible 1 homolog 2 (DDI2) is a protease that activates the transcription factor NRF1. Cellular models have shown that this pathway contributes to cell-stress adaptation, for example, on proteasome inhibition. However, DDI2 physiological function is unknown. Ddi2 Knock-out (KO) mice were embryonic lethal. Therefore, we generated liver-specific Ddi2-KO animals and used comprehensive genetic analysis to identify the molecular pathways regulated by DDI2. Here, we demonstrate that DDI2 contributes to metallothionein (MT) expression in mouse and human hepatocytes at basal and upon cadmium (Cd) exposure. This transcriptional program is dependent on DDI2-mediated NRF1 proteolytic maturation. In contrast, NRF1 homolog NRF2 does not contribute to MT production. Mechanistically, we observed that Cd exposure inhibits proteasome activity, resulting in DDI2-mediated NRF1 proteolytic maturation. In line with these findings, DDI2 deficiency sensitizes cells to Cd toxicity. This study identifies a function for DDI2 that links proteasome homeostasis to heavy metal mediated toxicity.
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