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Probing the Differential Interactions of Quinazolinedione PD 0305970 and Quinolones with Gyrase and Topoisomerase IV

Overview
Specialty Pharmacology
Date 2009 Jul 1
PMID 19564360
Citations 34
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Abstract

Quinazoline-2,4-diones, such as PD 0305970, are new DNA gyrase and topoisomerase IV (topo IV) inhibitors with potent activity against gram-positive pathogens, including quinolone-resistant isolates. The mechanistic basis of dione activity vis-à-vis quinolones is not understood. We present evidence for Streptococcus pneumoniae gyrase and topo IV that PD 0305970 and quinolones interact differently with the enzyme breakage-reunion and Toprim domains, DNA, and Mg2+-four components that are juxtaposed in the topoisomerase cleavage complex to effect DNA scission. First, PD 0305970 targets primarily gyrase in Streptococcus pneumoniae. However, unlike quinolones, which select predominantly for gyrA (or topo IV parC) mutations in the breakage-reunion domain, unusually the dione selected for novel mutants with alterations that map to a region of the Toprim domain of GyrB (R456H and E474A or E474D) or ParE (D435H and E475A). This "dione resistance-determining region" overlaps the GyrB quinolone resistance-determining region and the region that binds essential Mg2+ ions, each function involving conserved EGDSA and PLRGK motifs. Second, dione-resistant gyrase and topo IV were inhibited by ciprofloxacin, whereas quinolone-resistant enzymes (GyrA S81F and ParC S79F) remained susceptible to PD 0305970. Third, dione-promoted DNA cleavage by gyrase occurred at a distinct repertoire of sites, implying that structural differences with quinolones are sensed at the DNA level. Fourth, unlike the situation with quinolones, the Mg2+ chelator EDTA did not reverse dione-induced gyrase cleavage nor did the dione promote Mg2+-dependent DNA unwinding. It appears that PD 0305970 interacts uniquely to stabilize the cleavage complex of gyrase/topo IV perhaps via an altered orientation directed by the bidentate 3-amino-2,4-dione moiety.

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References
1.
Pan X, Dias M, Palumbo M, Fisher L . Clerocidin selectively modifies the gyrase-DNA gate to induce irreversible and reversible DNA damage. Nucleic Acids Res. 2008; 36(17):5516-29. PMC: 2553588. DOI: 10.1093/nar/gkn539. View

2.
Bellon S, Parsons J, Wei Y, Hayakawa K, Swenson L, Charifson P . Crystal structures of Escherichia coli topoisomerase IV ParE subunit (24 and 43 kilodaltons): a single residue dictates differences in novobiocin potency against topoisomerase IV and DNA gyrase. Antimicrob Agents Chemother. 2004; 48(5):1856-64. PMC: 400558. DOI: 10.1128/AAC.48.5.1856-1864.2004. View

3.
Morais Cabral J, Jackson A, Smith C, Shikotra N, Maxwell A, Liddington R . Crystal structure of the breakage-reunion domain of DNA gyrase. Nature. 1997; 388(6645):903-6. DOI: 10.1038/42294. View

4.
Gellert M, Fisher L, ODea M . DNA gyrase: purification and catalytic properties of a fragment of gyrase B protein. Proc Natl Acad Sci U S A. 1979; 76(12):6289-93. PMC: 411849. DOI: 10.1073/pnas.76.12.6289. View

5.
Yoshida H, Bogaki M, Nakamura M, Yamanaka L, Nakamura S . Quinolone resistance-determining region in the DNA gyrase gyrB gene of Escherichia coli. Antimicrob Agents Chemother. 1991; 35(8):1647-50. PMC: 245234. DOI: 10.1128/AAC.35.8.1647. View