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The evolutionarily conserved arginyltransferase 1 mediates a pVHL-independent oxygen-sensing pathway in mammalian cells

Dev Cell. 2022-03; 
Balaji T Moorthy, Chunhua Jiang, Devang M Patel, Yuguang Ban, Corin R O'Shea, Akhilesh Kumar, Tan Yuan, Michael D Birnbaum, Aldrin V Gomes, Xi Chen, Flavia Fontanesi, Theodore J Lampidis, Antoni Barrientos, Fangliang Zhang
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摘要

The response to oxygen availability is a fundamental process concerning metabolism and survival/death in all mitochondria-containing eukaryotes. However, the known oxygen-sensing mechanism in mammalian cells depends on pVHL, which is only found among metazoans but not in other species. Here, we present an alternative oxygen-sensing pathway regulated by ATE1, an enzyme ubiquitously conserved in eukaryotes that influences protein degradation by posttranslational arginylation. We report that ATE1 centrally controls the hypoxic response and glycolysis in mammalian cells by preferentially arginylating HIF1α that is hydroxylated by PHD in the presence of oxygen. Furthermore, the degradation of arginylated HIF1α is ... More

关键词

ATE1, Arginylation, HIF1α, Warburg effect, arginyltransferase, degradation, glycolysis, hypoxic signaling, oxygen sensing, posttranslational protein modification
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