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A proton relay enhances H2O2 sensitivity of GAPDH to facilitate metabolic adaptation.

Nat Chem Biol. 2015; 
Peralta D, Bronowska AK, Morgan B, Dóka É, Van Laer K, Nagy P, Gräter F, Dick TP.
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Codon Optimization A human GAPDH sequence was synthesized with a yeast codon bias (Genscript, Piscaaway, USA) and transferred into the p415TEF vector (LEU2 marker) using standard clon- ing techniques. Get A Quote

摘要

Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is sensitive to reversible oxidative inactivation by hydrogen peroxide (H2O2). Here we show that H2O2 reactivity of the active site thiolate (C152) is catalyzed by a previously unrecognized mechanism based on a dedicated proton relay promoting leaving group departure. Disruption of the peroxidatic reaction mechanism does not affect the glycolytic activity of GAPDH. Therefore, specific and separate mechanisms mediate the reactivity of the same thiolate nucleophile toward H2O2 and glyceraldehyde 3-phosphate, respectively. The generation of mutants in which the glycolytic and peroxidatic activities of GAPDH are comprehensively uncoupled allowed for a direct assessme... More

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