Staphylococcus aureus DNA ligase: characterization of its kinetics of catalysis and development of a high-throughput screening compatible chemiluminescent hybridization protection assay

Author:

GUL Sheraz1,BROWN Richard2,MAY Earl3,MAZZULLA Marie3,SMYTH Martin G.4,BERRY Colin5,MORBY Andrew5,POWELL David J.1

Affiliation:

1. Assay Development and Compound Profiling, GlaxoSmithKline Pharmaceuticals, New Frontiers Science Park (North), Third Avenue, Harlow, Essex CM19 4AW, U.K.

2. Molecular Light Technology Research Ltd, 5 Chiltern Close, Cardiff Industrial Park, Cardiff CF14 5DL, Wales, U.K.

3. MMPD CEDD, GlaxoSmithKline Pharmaceuticals, 1250 S. Collegeville Road, P.O. Box 5089, Collegeville, PA 19426, U.S.A.

4. Gene Expression and Protein Biochemistry, GlaxoSmithKline Pharmaceuticals, New Frontiers Science Park (North), Third Avenue, Harlow, Essex CM19 4AW, U.K.

5. School of Biosciences, Cardiff University, Museum Avenue, PO Box 911, Cardiff CF10 3US, Wales, U.K.

Abstract

DNA ligases are key enzymes involved in the repair and replication of DNA. Prokaryotic DNA ligases uniquely use NAD+ as the adenylate donor during catalysis, whereas eukaryotic enzymes use ATP. This difference in substrate specificity makes the bacterial enzymes potential targets for therapeutic intervention. We have developed a homogeneous chemiluminescence-based hybridization protection assay for Staphylococcus aureus DNA ligase that uses novel acridinium ester technology and demonstrate that it is an alternative to the commonly used radiometric assays for ligases. The assay has been used to determine a number of kinetic constants for S. aureus DNA ligase catalysis. These included the Km values for NAD+ (2.75±0.1 μM) and the acridinium-ester-labelled DNA substrate (2.5±0.2 nM). A study of the pH-dependencies of kcat, Km and kcat/Km has revealed values of kinetically influential ionizations within the enzyme–substrate complexes (kcat) and free enzyme (kcat/Km). In each case, the curves were shown to be composed of one kinetically influential ionization, for kcat, pKa=6.6±0.1 and kcat/Km, pKa=7.1±0.1. Inhibition characteristics of the enzyme against two Escherichia coli DNA ligase inhibitors have also been determined with IC50 values for these being 3.30±0.86 μM for doxorubicin and 1.40±0.07 μM for chloroquine diphosphate. The assay has also been successfully miniaturized to a sufficiently low volume to allow it to be utilized in a high-throughput screen (384-well format; 20 μl reaction volume), enabling the assay to be used in screening campaigns against libraries of compounds to discover leads for further drug development.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference45 articles.

1. DNA ligase: structure, mechanism, and function;Lehman;Science,1974

2. Dynamic mechanism of nick recognition by DNA ligase;Cherepanov;Eur. J. Biochem.,2002

3. Bacterial DNA ligases;Wilkinson;Mol. Microbiol.,2001

4. DNA ligases in the repair and replication of DNA;Timson;Mutat. Res.,2000

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