Abstract

Polymyxin-resistant mutants of Escherichia coli and Salmonella typhimurium accumulate a novel minor lipid that can donate 4-amino-4-deoxy-l-arabinose units (l-Ara4N) to lipid A. We now report the purification of this lipid from a pss(-) pmrA(C) mutant of E. coli and assign its structure as undecaprenyl phosphate-alpha-l-Ara4N. Approximately 0.2 mg of homogeneous material was isolated from an 8-liter culture by solvent extraction, followed by chromatography on DEAE-cellulose, C18 reverse phase resin, and silicic acid. Matrix-assisted laser desorption ionization/time of flight mass spectrometry in the negative mode yielded a single species [M - H](-) at m/z 977.5, consistent with undecaprenyl phosphate-alpha-l-Ara4N (M(r) = 978.41). (31)P NMR spectroscopy showed a single phosphorus atom at -0.44 ppm characteristic of a phosphodiester linkage. Selective inverse decoupling difference spectroscopy demonstrated that the undecaprenyl phosphate group is attached to the anomeric carbon of the l-Ara4N unit. One- and two-dimensional (1)H NMR studies confirmed the presence of a polyisoprene chain and a sugar moiety with chemical shifts and coupling constants expected for an equatorially substituted arabinopyranoside. Heteronuclear multiple-quantum coherence spectroscopy analysis demonstrated that a nitrogen atom is attached to C-4 of the sugar residue. The purified donor supports in vitro conversion of lipid IV(A) to lipid II(A), which is substituted with a single l-Ara4N moiety. The identification of undecaprenyl phosphate-alpha-l-Ara4N implies that l-Ara4N transfer to lipid A occurs in the periplasm of polymyxin-resistant strains, and establishes a new enzymatic pathway by which Gram-negative bacteria acquire antibiotic resistance.

Highlights

  • Polymyxin-resistant mutants of Escherichia coli and Salmonella typhimurium accumulate a novel minor lipid that can donate 4-amino-4-deoxy-L-arabinose units (L-Ara4N) to lipid A

  • We report the purification of this lipid from a pss؊ pmrA constitutive (pmrAC) mutant of E. coli and assign its structure as undecaprenyl phosphate-␣-L-Ara4N

  • We report the purification and structural characterization of a novel, minor lipid that accumulates in polymyxinresistant mutants of E. coli and S. typhimurium

Read more

Summary

The abbreviations used are

L-Ara4N, 4-amino-4-deoxy-L-arabinose; pEtN, phosphoethanolamine; Mes, 2-[N-morpholino]ethanesulfonic acid; Kdo, 3-deoxy-D-manno-octulosonic acid; MALDI/TOF mass spectrometry, matrix-assisted laser desorption ionization/time of flight mass spectrometry; HMQC, heteronuclear multiple-quantum coherence spectroscopy; HMBC, heteronuclear multiple-bond correlation spectroscopy. Wild type pho-24 (PhoP-constitutive) CSO22, phoP102ϻTn10d-cam CSO22, pagPϻTnphoA pmrA505 zjdϻTn10d-cam (PmrA-constitutive) pmrAϻTn10d. FϪ, ␭Ϫ W3110, pmrAC zjd-2211ϻTn10 derivative of WD101 (AKK211 donor) ␭Ϫ, relA1, spoT1, ilv-299, metB1, zjdϪ, 2211ϻTn10, ampCp-1, mcrBϪ, creC510 pss93ϻkan nadBϩ pmrACzjd-2211ϻTn10 derivative of AD90 (WD102 donor) ⌬(srl-recA)306ϻTn10(DE3), Tetr ⌬(srl-recA)306ϻTn10(DE3), Tetr. Vector containing a T7lac promoter, Ampr pET21a containing E. coli arnT pET21a containing S. typhimurium arnT pssϩ covering plasmid with temperature-sensitive ori, Camr Cloning vector, Kanr, Ampr pT7Blue-3 containing pmrA/pmrB operon from wild-type W3110 pT7Blue-3 containing pmrA/pmrB operon from WD101 pACYC184 encoding T7 lysozyme, Camr. The unambiguous demonstration of an undecaprenyl-linked intermediate indicates that lipid A modification with the L-Ara4N moiety occurs on the periplasmic surface of the inner membrane. Modification of lipid A with L-Ara4N units may provide a new biochemical marker for lipid A flip-flop [39] across the inner membrane

EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call