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Mechanism of phosphoryl transfer by nucleoside diphosphate kinase: pH dependence and role of the active site Lys16 and Tyr56 residues

  • Benoit Schneider
  • , Manuel Babolat
  • , Ying Wu Xu
  • , Joël Janin
  • , Michel Véron
  • , Dominique Deville-Bonne
  • Institut Pasteur, Paris
  • CNRS-UPR U. Propre de Recherche 9063
  • Columbia University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Nucleoside diphosphate (NDP) kinase phosphorylates nucleoside diphosphates with little specificity for the base and the sugar. Although nucleotide analogues used in antiviral therapies are also metabolized to their triphosphate form by NDP kinase, their lack of the 3′-hydroxyl of the ribose, which allows them to be DNA chain terminators, severely impairs the catalytic efficiency of NDP kinase. We have analyzed the kinetics parameters of several mutant NDP kinases modified on residues (Lys16, Tyr56, Asn119) interacting with the γ-phosphate and/or the 3′-OH of the Mg2+-ATP substrate. We compared the relative contributions of the active-site residues and the substrate 3′-OH for point mutations on Lys16, Tyr56 and Asn119. Analysis of additional data from pH profiles identify the ionization state of these residues in the enzyme active form. X-ray structure of K16A mutant NDP kinase shows no detectable rearrangement of the residues of the active site.

langue originaleAnglais
Pages (de - à)1964-1971
Nombre de pages8
journalEuropean Journal of Biochemistry
Volume268
Numéro de publication7
Les DOIs
étatPublié - 27 sept. 2001
Modification externeOui

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