Redox status affects the catalytic activity of glutamyl-tRNA synthetase
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Katz, Assaf
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Redox status affects the catalytic activity of glutamyl-tRNA synthetase
Abstract
Glutamyl-tRNA synthetases (GluRS) provide Glu-tRNA for different processes including protein synthesis, glutamine transamidation and tetrapyrrole biosynthesis. Many organisms contain multiple GluRSs, but whether these duplications solely broaden tRNA specificity or also play additional roles in tetrapyrrole biosynthesis is not known. Previous studies have shown that GluRS1, one of two GluRSs from the extremophile Acidithiobacillus ferrooxidans, is inactivated when intracellular heme is elevated suggesting a specific role for GluRS1 in the regulation of tetrapyrrole biosynthesis. We now show that, in vitro, GluRS1 activity is reversibly inactivated upon oxidation by hemin and hydrogen peroxide. The targets for oxidation-based inhibition were found to be cysteines from a SWIM zinc-binding motif located in the tRNA acceptor helix-binding domain. tRNAGlu was able to protect GluRS1 against oxidative inactivation by hemin plus hydrogen peroxide. The sensitivity to oxidation of A. ferrooxidan
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URI: https://repositorio.uchile.cl/handle/2250/154785
DOI: 10.1016/j.bbrc.2010.06.031
ISSN: 10902104
0006291X
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Biochemical and Biophysical Research Communications, Volumen 398, Issue 1, 2018, Pages 51-55
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