Broad specificity of human phosphoglycerate kinase for antiviral nucleoside analogs.

Abstract:

:Nucleoside analogs used in antiviral therapies need to be phosphorylated to their tri-phospho counterparts in order to be active on their cellular target. Human phosphoglycerate kinase (hPGK) was recently reported to participate in the last step of phosphorylation of cytidine L-nucleotide derivatives [Krishnan PGE, Lam W, Dutschman GE, Grill SP, Cheng YC. Novel role of 3-phosphoglycerate kinase, a glycolytic enzyme, in the activation of L-nucleoside analogs, a new class of anticancer and antiviral agents. J Biol Chem 2003;278:36726-32]. In the present work, we extended the enzymatic study of human PGK specificity to purine and pyrimidine nucleotide derivatives in both D- and L-configuration. Human PGK demonstrated catalytic efficiencies in the 10(4)-10(5)M(-1)s(-1) range for purine ribo-, deoxyribo- and dideoxyribonucleotide derivatives, either in D- or L-configuration. In contrast, it was poorly active with natural pyrimidine D-nucleotides (less than 10(3)M(-1)s(-1)). Pyrimidine L-enantiomers, which are promising therapeutic analogs against B hepatitis, were 2-25 times better substrates than their D-counterparts. The broad specificity of substrate of human PGK suggests that this enzyme may be involved in the cellular activation of several antiviral nucleoside analogs including dideoxyinosine, acyclovir, L-2'-deoxycytosine and L-2'-deoxythymidine.

journal_name

Biochem Pharmacol

journal_title

Biochemical pharmacology

authors

Gallois-Montbrun S,Faraj A,Seclaman E,Sommadossi JP,Deville-Bonne D,Véron M

doi

10.1016/j.bcp.2004.06.012

subject

Has Abstract

pub_date

2004-11-01 00:00:00

pages

1749-56

issue

9

eissn

0006-2952

issn

1873-2968

pii

S0006-2952(04)00428-9

journal_volume

68

pub_type

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