TY - JOUR
T1 - Comparative study of the membrane-permeabilizing activities of mastoparans and related histamine-releasing agents in bacteria, erythrocytes, and mast cells
AU - Nakao, Satoshi
AU - Komagoe, Keiko
AU - Inoue, Tsuyoshi
AU - Katsu, Takashi
N1 - Funding Information:
We thank Mr. Yasuhiro Shimonaka and Ms. Miwako Toki, who carried out some of the preliminary experiments. This work was supported by a Grant-in-Aid for Scientific Research (KAKENHI 22590036 ) from the Japan Society for the Promotion of Science .
PY - 2011/1
Y1 - 2011/1
N2 - The membrane-permeabilizing activities of mastoparans and related histamine-releasing agents were compared through measurements of K+ efflux from bacteria, erythrocytes, and mast cells. Changes in bacterial cell viability, hemolysis, and histamine release, as well as in the shape of erythrocytes were also investigated. The compounds tested were mastoparans (HR1, a mastoparan from Polistes jadwagae, and a mastoparan from Vespula lewisii), granuliberin R, mast cell-degranulating peptide, and compound 48/80, as well as antimicrobial peptides, such as magainin I, magainin II, gramicidin S, and melittin. We used a K+-selective electrode to determine changes in the permeability to K+ of the cytoplasmic membranes of cells. Consistent with the surface of mast cells becoming negatively charged during histamine release, due to the translocation of phosphatidylserine to the outer leaflet of the cytoplasmic membrane, histamine-releasing agents induced K + efflux from mast cells, dependent on their ability to increase the permeability of bacterial cytoplasmic membranes rich in negatively charged phospholipids. The present results demonstrated that amphiphilic peptides, possessing both histamine-releasing and antimicrobial capabilities, induced the permeabilization of the cytoplasmic membranes of not only bacteria but mast cells. Mastoparans increased the permeability of membranes in human erythrocytes at higher concentrations, and changed the normal discoid shape to a crenated form. The structural requirement for making the crenated form was determined using compound 48/80 and its constituents (monomer, dimer, and trimer), changing systematically the number of cationic charges of the molecules.
AB - The membrane-permeabilizing activities of mastoparans and related histamine-releasing agents were compared through measurements of K+ efflux from bacteria, erythrocytes, and mast cells. Changes in bacterial cell viability, hemolysis, and histamine release, as well as in the shape of erythrocytes were also investigated. The compounds tested were mastoparans (HR1, a mastoparan from Polistes jadwagae, and a mastoparan from Vespula lewisii), granuliberin R, mast cell-degranulating peptide, and compound 48/80, as well as antimicrobial peptides, such as magainin I, magainin II, gramicidin S, and melittin. We used a K+-selective electrode to determine changes in the permeability to K+ of the cytoplasmic membranes of cells. Consistent with the surface of mast cells becoming negatively charged during histamine release, due to the translocation of phosphatidylserine to the outer leaflet of the cytoplasmic membrane, histamine-releasing agents induced K + efflux from mast cells, dependent on their ability to increase the permeability of bacterial cytoplasmic membranes rich in negatively charged phospholipids. The present results demonstrated that amphiphilic peptides, possessing both histamine-releasing and antimicrobial capabilities, induced the permeabilization of the cytoplasmic membranes of not only bacteria but mast cells. Mastoparans increased the permeability of membranes in human erythrocytes at higher concentrations, and changed the normal discoid shape to a crenated form. The structural requirement for making the crenated form was determined using compound 48/80 and its constituents (monomer, dimer, and trimer), changing systematically the number of cationic charges of the molecules.
KW - Antimicrobial peptide
KW - Cell shape
KW - Compound 48/80
KW - Histamine-releasing agent
KW - Mastoparan
KW - Membrane permeability
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U2 - 10.1016/j.bbamem.2010.10.007
DO - 10.1016/j.bbamem.2010.10.007
M3 - Article
C2 - 20955685
AN - SCOPUS:78649773506
SN - 0005-2736
VL - 1808
SP - 490
EP - 497
JO - Biochimica et Biophysica Acta - Biomembranes
JF - Biochimica et Biophysica Acta - Biomembranes
IS - 1
ER -