3,5-Dioxopyrazolidines, Novel Inhibitors of UDP- N - Acetylenolpyruvylglucosamine Reductase (MurB) with Activity against Gram-Positive Bacteria

Author:

Yang Youjun1,Severin Anatoly1,Chopra Rajiv1,Krishnamurthy Girija1,Singh Guy1,Hu William1,Keeney David1,Svenson Kristine1,Petersen Peter J.1,Labthavikul Pornpen1,Shlaes David M.1,Rasmussen Beth A.1,Failli Amedeo A.1,Shumsky Jay S.1,Kutterer Kristina M. K.1,Gilbert Adam1,Mansour Tarek S.1

Affiliation:

1. Wyeth Research, 401 N. Middleton Rd., Pearl River, New York 10965, and Wyeth Research, CN 8000, Princeton, New Jersey 08543

Abstract

ABSTRACT A series of 3,5-dioxopyrazolidines was identified as novel inhibitors of UDP- N -acetylenolpyruvylglucosamine reductase (MurB). Compounds 1 to 3, which are 1,2-bis(4-chlorophenyl)-3,5-dioxopyrazolidine-4-carboxamides, inhibited Escherichia coli MurB, Staphyloccocus aureus MurB, and E. coli MurA with 50% inhibitory concentrations (IC 50 s) in the range of 4.1 to 6.8 μM, 4.3 to 10.3 μM, and 6.8 to 29.4 μM, respectively. Compound 4, a C-4-unsubstituted 1,2-bis(3,4-dichlorophenyl)-3,5-dioxopyrazolidine, showed moderate inhibitory activity against E. coli MurB, S. aureus MurB, and E. coli MurC (IC 50 s, 24.5 to 35 μM). A fluorescence-binding assay indicated tight binding of compound 3 with E. coli MurB, giving a dissociation constant of 260 nM. Structural characterization of E. coli MurB was undertaken, and the crystal structure of a complex with compound 4 was obtained at 2.4 Å resolution. The crystal structure indicated the binding of a compound at the active site of MurB and specific interactions with active-site residues and the bound flavin adenine dinucleotide cofactor. Peptidoglycan biosynthesis studies using a strain of Staphylococcus epidermidis revealed reduced peptidoglycan biosynthesis upon incubation with 3,5-dioxopyrazolidines, with IC 50 s of 0.39 to 11.1 μM. Antibacterial activity was observed for compounds 1 to 3 (MICs, 0.25 to 16 μg/ml) and 4 (MICs, 4 to 8 μg/ml) against gram-positive bacteria including methicillin-resistant S. aureus , vancomycin-resistant Enterococcus faecalis , and penicillin-resistant Streptococcus pneumoniae .

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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