Structure−Function Relations of Variant and Fragment Nisins Studied with Model Membrane Systems
- 1 April 1997
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 36 (13) , 3802-3810
- https://doi.org/10.1021/bi962506t
Abstract
Nisin, a 34 residue lantibiotic produced by strains of Lactococcus lactis subsp. lactis, exerts antimicrobial activity against Gram-positive bacteria at the cytoplasmic membrane. The structural aspects of nisin which facilitate membrane interaction and permeabilization have been investigated in planar lipid bilayers and liposomes with proteolytic fragments and site-directed variants. N-Terminal nisin fragments N1-12 and N1-20 had little effect on phospholipid mobility, on macroscopic electrical conductance, or on calcein release from liposomes. By contrast, the I30W nisin A variant induced a time-dependent reduction in lipid mobility, indicative of nisin-membrane surface interactions, as well as a decline in membrane capacitance, rise in conductance, and calcein release from liposomes. In these respects I30W nisin A is similar to native nisin. Charge substitutions were also engineered to generate K12L and H27K nisin A variants, both of which were similar to I30W nisin A with respect to an overall reduction in phospholipid mobility. While the K12L nisin A variant elicited a higher increase in membrane capacitance and electrical conductance than I30W nisin A, the H27K nisin A variant elicited weaker effects. These results point to a substantial role for intramembrane charged residues in controlling ion flow through nisin-doped membranes. Native nisin and variants elicit an enhanced release of calcein from liposomes composed of the negatively-charged phospholipids cardiolipin and phosphatidylserine, compared with phospholipid bearing no net charge, suggesting that an electrostatic attraction encourages the initial nisin-membrane association. The results are discussed in the context of other recently proposed models for nisin action.Keywords
This publication has 10 references indexed in Scilit:
- Lateral diffusion in planar lipid bilayers: a fluorescence recovery after photobleaching investigation of its modulation by lipid composition, cholesterol, or alamethicin content and divalent cationsBiophysical Journal, 1996
- Interaction of the Lantibiotic Nisin with Membranes Revealed by Fluorescence Quenching of an Introduced TryptophanEuropean Journal of Biochemistry, 1996
- Interaction of Nisin with Planar Lipid Bilayers Monitored by Fluorescence Recovery After PhotobleachingThe Journal of Membrane Biology, 1996
- Nisin Z, Mutant Nisin Z and Lacticin 481 Interactions with Anionic Lipids Correlate with Antimicrobial ActivityEuropean Journal of Biochemistry, 1996
- Protein engineering and biosynthesis of nisin and regulation of transcription of the structural nisA geneInternational Dairy Journal, 1995
- Cheek cell membrane fluidity measured by fluorescence recovery after photobleaching and steady-state fluorescence anisotropyThe Journal of Membrane Biology, 1994
- Engineering dehydrated amino acid residues in the antimicrobial peptide nisin.Journal of Biological Chemistry, 1992
- Mode of action of the staphylococcinlike peptide Pep 5: voltage-dependent depolarization of bacterial and artificial membranesJournal of Bacteriology, 1988
- Susceptibility of bacterial, eukaryotic and artificial membranes to the disruptive action of the cationic peptides Pep 5 and nisinFEMS Microbiology Letters, 1986
- Lateral mobility in membranes as detected by fluorescence recovery after photobleachingBiophysical Journal, 1982