Structure-activity relationship of sulfonyl piperazine LpxH inhibitors analyzed by an LpxE-coupled malachite green assay

  • Minhee Lee
  • , Jinshi Zhao
  • , Seung Hwa Kwak
  • , Jae Cho
  • , Myungju Lee
  • , Robert A. Gillespie
  • , Do Yeon Kwon
  • , Hyunji Lee
  • , Hyun Ju Park
  • , Qinglin Wu
  • , Pei Zhou
  • , Jiyong Hong

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

The UDP-2,3-diacylglucosamine pyrophosphatase LpxH in the Raetz pathway of lipid A biosynthesis is an essential enzyme in the vast majority of Gram-negative pathogens and an excellent novel antibiotic target. The 32 P-radioautographic thin-layer chromatography assay has been widely used for analysis of LpxH activity, but it is inconvenient for evaluation of a large number of LpxH inhibitors over an extended time period. Here, we report a coupled, nonradioactive LpxH assay that utilizes the recently discovered Aquifex aeolicus lipid A 1-phosphatase LpxE for quantitative removal of the 1-phosphate from lipid X, the product of the LpxH catalysis; the released inorganic phosphate is subsequently quantified by the colorimetric malachite green assay, allowing the monitoring of the LpxH catalysis. Using such a coupled enzymatic assay, we report the biochemical characterization of a series of sulfonyl piperazine LpxH inhibitors. Our analysis establishes a preliminary structure-activity relationship for this class of compounds and reveals a pharmacophore of two aromatic rings, two hydrophobic groups, and one hydrogen-bond acceptor. We expect that our findings will facilitate the development of more effective LpxH inhibitors as potential antibacterial agents.

Original languageEnglish
Pages (from-to)641-651
Number of pages11
JournalACS Infectious Diseases
Volume5
Issue number4
DOIs
StatePublished - 12 Apr 2019

Keywords

  • enzyme-coupled assay
  • Gram-negative bacteria
  • lipid A
  • LpxE
  • LpxH
  • novel antibiotics

Fingerprint

Dive into the research topics of 'Structure-activity relationship of sulfonyl piperazine LpxH inhibitors analyzed by an LpxE-coupled malachite green assay'. Together they form a unique fingerprint.

Cite this