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Article Abstract

Ferroptosis is a form of regulated cell death induced by iron-dependent accumulation of lipid hydroperoxides. Selenoprotein glutathione peroxidase 4 (GPX4) suppresses ferroptosis by detoxifying lipid hydroperoxides via a catalytic selenocysteine (Sec) residue. Sec, the genetically encoded 21 amino acid, is biosynthesized from a reactive selenium donor on its cognate tRNA. It is thought that intracellular selenium must be delivered 'safely' and 'efficiently' by a carrier protein owing to its high reactivity and very low concentrations. Here, we identified peroxiredoxin 6 (PRDX6) as a novel selenoprotein synthesis factor. Loss of PRDX6 decreases the expression of selenoproteins and induces ferroptosis via a reduction in GPX4. Mechanistically, PRDX6 increases the efficiency of intracellular selenium utilization by transferring selenium between proteins within the selenocysteyl-tRNA synthesis machinery, leading to efficient synthesis of selenocysteyl-tRNA. These findings highlight previously unidentified selenium metabolic systems and provide new insights into ferroptosis.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11327102PMC
http://dx.doi.org/10.1038/s41594-024-01329-zDOI Listing

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