Literature DB >> 17302737

Functional studies of active-site mutants from Drosophila melanogaster deoxyribonucleoside kinase. Investigations of the putative catalytic glutamate-arginine pair and of residues responsible for substrate specificity.

Louise Egeblad-Welin1, Yonathan Sonntag, Hans Eklund, Birgitte Munch-Petersen.   

Abstract

The catalytic reaction mechanism and binding of substrates was investigated for the multisubstrate Drosophila melanogaster deoxyribonucleoside kinase. Mutation of E52 to D, Q and H plus mutations of R105 to K and H were performed to investigate the proposed catalytic reaction mechanism, in which E52 acts as an initiating base and R105 is thought to stabilize the transition state of the reaction. Mutant enzymes (E52D, E52H and R105H) showed a markedly decreased k(cat), while the catalytic activity of E52Q and R105K was abolished. The E52D mutant was crystallized with its feedback inhibitor dTTP. The backbone conformation remained unchanged, and coordination between D52 and the dTTP-Mg complex was observed. The observed decrease in k(cat) for E52D was most likely due to an increased distance between the catalytic carboxyl group and 5'-OH of deoxythymidine (dThd) or deoxycytidine (dCyd). Mutation of Q81 to N and Y70 to W was carried out to investigate substrate binding. The mutations primarily affected the K(m) values, whereas the k(cat) values were of the same magnitude as for the wild-type. The Y70W mutation made the enzyme lose activity towards purines and negative cooperativity towards dThd and dCyd was observed. The Q81N mutation showed a 200- and 100-fold increase in K(m), whereas k(cat) was decreased five- and twofold for dThd and dCyd, respectively, supporting a role in substrate binding. These observations give insight into the mechanisms of substrate binding and catalysis, which is important for developing novel suicide genes and drugs for use in gene therapy.

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Year:  2007        PMID: 17302737     DOI: 10.1111/j.1742-4658.2007.05701.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  4 in total

1.  Post-translational phosphorylation of serine 74 of human deoxycytidine kinase favors the enzyme adopting the open conformation making it competent for nucleoside binding and release.

Authors:  Saugata Hazra; Andrzej Szewczak; Stephan Ort; Manfred Konrad; Arnon Lavie
Journal:  Biochemistry       Date:  2011-03-16       Impact factor: 3.162

2.  The sugar ring of the nucleoside is required for productive substrate positioning in the active site of human deoxycytidine kinase (dCK): implications for the development of dCK-activated acyclic guanine analogues.

Authors:  Saugata Hazra; Manfred Konrad; Arnon Lavie
Journal:  J Med Chem       Date:  2010-08-12       Impact factor: 7.446

3.  Biological phosphorylation of an Unnatural Base Pair (UBP) using a Drosophila melanogaster deoxynucleoside kinase (DmdNK) mutant.

Authors:  Fei Chen; Yuan Zhang; Ashley B Daugherty; Zunyi Yang; Ryan Shaw; Mengxing Dong; Stefan Lutz; Steven A Benner
Journal:  PLoS One       Date:  2017-03-21       Impact factor: 3.240

Review 4.  Structure, physiological role, and specific inhibitors of human thymidine kinase 2 (TK2): present and future.

Authors:  María-Jesús Pérez-Pérez; Eva-María Priego; Ana-Isabel Hernández; Olga Familiar; María-José Camarasa; Ana Negri; Federico Gago; Jan Balzarini
Journal:  Med Res Rev       Date:  2008-09       Impact factor: 12.944

  4 in total

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