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PMID: 26368853 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Antimicrobial Peptide Lactoferricin B-Induced Rapid Leakage of Internal Contents from Single Giant Unilamellar Vesicles.

Biochemistry ·Vol. 54 ·No. 38 ·2015-09-29 ·Pages 5802-14

Moniruzzaman M, Alam JM, Dohra H, Yamazaki M

Abstract

Enzymatic digestion of bovine lactoferrin generates lactoferricin B (Lfcin B), a 25-mer peptide with strong antimicrobial activity of unknown mechanism. To elucidate the mechanistic basis of Lfcin B bactericidal activity, we investigated the interaction of Lfcin B with Escherichia coli and liposomes of lipid membranes. Lfcin B induced the influx of a membrane-impermeant fluorescent probe, SYTOX green, from the outside of E. coli into its cytoplasm. Lfcin B induced gradual leakage of calcein from large unilamellar vesicles (LUVs) of dioleoylphosphatidylglycerol (DOPG)/dioleoylphosphatidylcholine (DOPC) membranes. To clarify the cause of Lfcin B-induced leakage of calcein from the LUVs, we used the single giant unilamellar vesicle (GUV) method to investigate the interaction of Lfcin B with calcein-containing DOPG/DOPC-GUVs. We observed that a rapid leakage of calcein from a GUV started stochastically; statistical analysis provided a rate constant for Lfcin B-induced pore formation, kp. On the other hand, phase-contrast microscopic images revealed that Lfcin B induced a rapid leakage of sucrose from the single GUVs with concomitant appearance of a spherical GUV of smaller diameter. Because of the very fast leakage, and at the present time resolution of the experiments (33 ms), we could not follow the evolution of pore nor the process of the structural changes of the GUV. Here we used the term "local rupture" to express the rapid leakage of sucrose and determined the rate constant of local rupture, kL. On the basis of the comparison between kp and kL, we concluded that the leakage of calcein from single GUVs occurred as a result of a local rupture in the GUVs and that smaller pores inducing leakage of calcein were not formed before the local rupture. The results of the effect of the surface charge density of lipid membranes and that of salt concentration in buffer on kp clearly show that kp increases with an increase in the extent of electrostatic interactions due to the surface charges. Analysis of Lfcin B-induced shape changes indicated that the binding of Lfcin B increased the area of the outer monolayer of GUVs. These results indicate that Lfcin B-induced damage of the plasma membrane of E. coli with its concomitant rapid leakage of internal contents is a key factor for the bactericidal activity of LfcinB.

MeSH Terms
Amino Acid Sequence Animals Anti-Bacterial Agents/chemistry,pharmacology Cattle Cell Membrane Permeability/drug effects Escherichia coli/drug effects,metabolism Escherichia coli Infections/drug therapy,microbiology Fluoresceins/metabolism Fluorescent Dyes/metabolism Humans Lactoferrin/chemistry,pharmacology Molecular Sequence Data Organic Chemicals/metabolism Phosphatidylcholines/metabolism Phosphatidylglycerols/metabolism Static Electricity Sucrose/metabolism Unilamellar Liposomes/metabolism
Chemicals
Anti-Bacterial Agents Fluoresceins Fluorescent Dyes Organic Chemicals Phosphatidylcholines Phosphatidylglycerols SYTOX Green Unilamellar Liposomes lactoferricin B Sucrose 1,2-dioleoyl-sn-glycero-3-phosphoglycerol Lactoferrin 1,2-oleoylphosphatidylcholine fluorexon
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Moniruzzaman Md
Integrated Bioscience Section, Graduate School of Science and Technology, ‡Nanomaterials Research Division, Research Institute of Electronics, §Instrumental Research Support Office, Research Institute of Green Science and Technology, and ∥Department of Physics, Faculty of Science, Shizuoka University , Shizuoka 422-8529, Japan.
Alam Jahangir Md
Integrated Bioscience Section, Graduate School of Science and Technology, ‡Nanomaterials Research Division, Research Institute of Electronics, §Instrumental Research Support Office, Research Institute of Green Science and Technology, and ∥Department of Physics, Faculty of Science, Shizuoka University , Shizuoka 422-8529, Japan.
Dohra Hideo
Integrated Bioscience Section, Graduate School of Science and Technology, ‡Nanomaterials Research Division, Research Institute of Electronics, §Instrumental Research Support Office, Research Institute of Green Science and Technology, and ∥Department of Physics, Faculty of Science, Shizuoka University , Shizuoka 422-8529, Japan.
Yamazaki Masahito
Integrated Bioscience Section, Graduate School of Science and Technology, ‡Nanomaterials Research Division, Research Institute of Electronics, §Instrumental Research Support Office, Research Institute of Green Science and Technology, and ∥Department of Physics, Faculty of Science, Shizuoka University , Shizuoka 422-8529, Japan.
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
1520-4995
Published
2015-09-29
Epub
2015-00-17
Pages
5802-14
Language
English
Region
United States
NLM ID
0370623
Subset
IM
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