Potent, Novel in Vitro Inhibitors of the<i>Pseudomonas</i><i>a</i><i>eruginosa</i>Deacetylase LpxC

Toni Kline(Duke University), Niels H. Andersen(University of Washington), Eric A. Harwood(University of Washington), Jason L. Bowman(Duke University), André Malanda(University of Washington), Stephanie Endsley(University of Washington), Alice L. Erwin(University of Washington), Michael L. Doyle(University of Washington), Susan Fong(Duke University), Alex L. Harris(University of Washington), Brian A. Mendelsohn(University of Washington), Khisimuzi Mdluli(University of Washington), Christian R.H. Raetz(University of Washington), C. Kendall Stover(University of Washington), Pamela R. Witte(Duke University), Asha Yabannavar(University of Washington), Shuguang Zhu(University of Washington)
Journal of Medicinal Chemistry
June 7, 2002
Cited by 117Open Access
Full Text

Abstract

Deacetylation of uridyldiphospho-3-O-(R-hydroxydecanoyl)-N-acetylglucosamine by LpxC is the first committed step in the Pseudomonas aeruginosa biosynthetic pathway to lipid A; homologous enzymes are found widely among Gram-negative bacteria. As an essential enzyme for which no inhibitors have yet been reported, the P. aeruginosa LpxC represents a highly attractive target for a novel antibacterial drug. We synthesized several focused small-molecule libraries, each composed of a variable aromatic ring, one of four heterocyclic/spacer moieties, and a hydroxamic acid and evaluated the LpxC inhibition of these compounds against purified P. aeruginosa enzyme. To ensure that the in vitro assay would be as physiologically relevant as possible, we synthesized a tritiated form of the specific P. aeruginosa glycolipid substrate and measured directly the enzymatically released acetate. Several of our novel compounds, predominantly those having fluorinated substituents on the aromatic ring and an oxazoline as the heterocyclic moiety, demonstrated in vitro IC(50) values less than 1 microM. We now report the synthesis and in vitro evaluation of these P. aeruginosa LpxC inhibitors.


Related Papers

No related papers found

Powered by citation graph analysis