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Fragment-Based Discovery of Novel Non-Hydroxamate LpxC Inhibitors with Antibacterial Activity

Authors :
Yuya Ogata
Harumi Kanazawa
Macias Alba
Norikazu Ohtake
Allan E. Surgenor
Iichiro Takata
Hajime Takashima
Walmsley David
Kiyoko Fujita
Hayley Angove
Kunihiko Iwamoto
Masashi Mima
Hiroyuki Sugiyama
Fumihito Ushiyama
Junya Yamagishi
Yousuke Yamada
Alan P. Robertson
Kosuke Hitaka
Koichiro Nakano
Hayato Watanabe
Atsushi Okada
Yohei Matsuda
Roderick E. Hubbard
Nozomi Tanaka-Yamamoto
Toru Yamaguchi-Sasaki
Risa Kurimoto-Tsuruta
Lisa Baker
Akihiro Tanaka
R. Harris
Source :
Journal of medicinal chemistry. 63(23)
Publication Year :
2020

Abstract

UDP-3-O-acyl-N-acetylglucosamine deacetylase (LpxC) is a zinc metalloenzyme that catalyzes the first committed step in the biosynthesis of Lipid A, an essential component of the cell envelope of Gram-negative bacteria. The most advanced, disclosed LpxC inhibitors showing antibacterial activity coordinate zinc through a hydroxamate moiety with concerns about binding to other metalloenzymes. Here, we describe the discovery, optimization, and efficacy of two series of compounds derived from fragments with differing modes of zinc chelation. A series was evolved from a fragment where a glycine moiety complexes zinc, which achieved low nanomolar potency in an enzyme functional assay but poor antibacterial activity on cell cultures. A second series was based on a fragment that chelated zinc through an imidazole moiety. Structure-guided design led to a 2-(1S-hydroxyethyl)-imidazole derivative exhibiting low nanomolar inhibition of LpxC and a minimum inhibitory concentration (MIC) of 4 μg/mL against Pseudomonas aeruginosa, which is little affected by the presence of albumin.

Details

ISSN :
15204804
Volume :
63
Issue :
23
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....019ee8a95fea26f38a355f0054fb803d