Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, 428 Church Street, Ann Arbor, MI 48109, USA.
Nucleic Acids Res. 2013 Feb 1;41(4):e56. doi: 10.1093/nar/gks1292. Epub 2012 Dec 24.
Bacterial DNA primase DnaG synthesizes RNA primers required for chromosomal DNA replication. Biochemical assays measuring primase activity have been limited to monitoring formation of radioactively labelled primers because of the intrinsically low catalytic efficiency of DnaG. Furthermore, DnaG is prone to aggregation and proteolytic degradation. These factors have impeded discovery of DnaG inhibitors by high-throughput screening (HTS). In this study, we expressed and purified the previously uncharacterized primase DnaG from Mycobacterium tuberculosis (Mtb DnaG). By coupling the activity of Mtb DnaG to that of another essential enzyme, inorganic pyrophosphatase from M. tuberculosis (Mtb PPiase), we developed the first non-radioactive primase-pyrophosphatase assay. An extensive optimization of the assay enabled its efficient use in HTS (Z' = 0.7 in the 384-well format). HTS of 2560 small molecules to search for inhibitory compounds yielded several hits, including suramin, doxorubicin and ellagic acid. We demonstrate that these three compounds inhibit Mtb DnaG. Both suramin and doxorubicin are potent (low-µM) DNA- and nucleotide triphosphate-competitive priming inhibitors that interact with more than one site on Mtb DnaG. This novel assay should be applicable to other primases and inefficient DNA/RNA polymerases, facilitating their characterization and inhibitor discovery.
细菌 DNA 引物酶 DnaG 合成染色体 DNA 复制所需的 RNA 引物。由于 DnaG 的固有低催化效率,测量引物酶活性的生化测定一直限于监测放射性标记引物的形成。此外,DnaG 易于聚集和蛋白水解降解。这些因素阻碍了通过高通量筛选 (HTS) 发现 DnaG 抑制剂。在这项研究中,我们表达和纯化了以前未表征的结核分枝杆菌 (Mtb DnaG) 的引物酶。通过将 Mtb DnaG 的活性与另一种必需酶,来自结核分枝杆菌的无机焦磷酸酶 (Mtb PPiase) 的活性偶联,我们开发了第一个非放射性引物-焦磷酸酶测定法。对该测定法进行了广泛的优化,使其能够有效地用于 HTS(384 孔格式中的 Z'=0.7)。对 2560 种小分子进行 HTS 以寻找抑制化合物,得到了几个阳性结果,包括苏拉明、阿霉素和鞣花酸。我们证明这三种化合物抑制 Mtb DnaG。苏拉明和阿霉素都是有效的(低 µM)DNA 和核苷酸三磷酸竞争性引发抑制剂,与 Mtb DnaG 上的多个位点相互作用。这种新的测定法应该适用于其他引物酶和低效的 DNA/RNA 聚合酶,有助于它们的表征和抑制剂的发现。