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Nicotinamide riboside kinase structures reveal new pathways to NAD+
Authors:Tempel Wolfram  Rabeh Wael M  Bogan Katrina L  Belenky Peter  Wojcik Marzena  Seidle Heather F  Nedyalkova Lyudmila  Yang Tianle  Sauve Anthony A  Park Hee-Won  Brenner Charles
Institution:1 Structural Genomics Consortium and Department of Pharmacology, University of Toronto, Toronto, Canada, 2 Departments of Genetics and Biochemistry and Norris Cotton Cancer Center, Dartmouth Medical School, Lebanon, New Hampshire, United States of America, 3 Department of Pharmacology, Weill Cornell Medical College, New York, New York, United States of America
Abstract:The eukaryotic nicotinamide riboside kinase (Nrk) pathway, which is induced in response to nerve damage and promotes replicative life span in yeast, converts nicotinamide riboside to nicotinamide adenine dinucleotide (NAD+) by phosphorylation and adenylylation. Crystal structures of human Nrk1 bound to nucleoside and nucleotide substrates and products revealed an enzyme structurally similar to Rossmann fold metabolite kinases and allowed the identification of active site residues, which were shown to be essential for human Nrk1 and Nrk2 activity in vivo. Although the structures account for the 500-fold discrimination between nicotinamide riboside and pyrimidine nucleosides, no enzyme feature was identified to recognize the distinctive carboxamide group of nicotinamide riboside. Indeed, nicotinic acid riboside is a specific substrate of human Nrk enzymes and is utilized in yeast in a novel biosynthetic pathway that depends on Nrk and NAD+ synthetase. Additionally, nicotinic acid riboside is utilized in vivo by Urh1, Pnp1, and Preiss-Handler salvage. Thus, crystal structures of Nrk1 led to the identification of new pathways to NAD+.
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