Biochemistry · 2019 · 37 citations · 56 references
The clinically important antibiotic amphotericin B (AmB) is a membrane-active natural product that targets membrane sterol. The antimicrobial activity of AmB is generally attributed to its membrane permeabilization, which occurs when a pore is formed across a lipid bilayer. In this study, the molecular orientation of AmB was investigated using solid-state nuclear magnetic resonance (NMR) to better understand the mechanism of antifungal activity. The methyl ester of AmB (AME) labeled with NMR isotopes, d<sub>3</sub>-AME, and its fluorinated and/or <sup>13</sup>C-labeled derivatives were prepared. All of the AmB derivatives showed similar membrane-disrupting activities and ultraviolet spectra in phospholipid liposomes, suggesting that their molecular assemblies in membranes closely mimic those of AmB. Solid-state <sup>2</sup>H NMR measurements of d<sub>3</sub>-AME in a hydrated membrane showed that the mobility of AME molecules depends on concentration and temperature. At a 1:5:45 AME:Erg:dimyristoylphosphatidylcholine ratio, AME became sufficiently mobilized to observe the motional averaging of quadrupole coupling. On the basis of the rotational averaging effect of <sup>19</sup>F chemical shift anisotropy, <sup>2</sup>H quadrupolar splitting, and <sup>13</sup>C-<sup>19</sup>F dipolar coupling of 14β-F-AMEs, we deduced that the molecular axis of AME is predominantly parallel to the normal of a lipid bilayer. This result supports the barrel-stave model as a molecular assembly of AmB in membranes.
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Antimicrobial peptides of multicellular organisms
Michael Zasloff · Nature · 2002 · 8.3K citations
Ben de Kruijff, R.A. Demel · Biochimica et Biophysica Acta (BBA) - Biomembranes · 1974 · 607 citations
Lipid Preparation, Proteinlipid Interaction, Lecithin Liposomes +10