MECHANISM OF LEAKAGE OF PHOSPHOLIPID VESICLE CONTENTS INDUCED BY THE PEPTIDE GALA

被引:283
作者
PARENTE, RA
NIR, S
SZOKA, FC
机构
[1] UNIV CALIF SAN FRANCISCO, SCH PHARM, DEPT PHARM, SAN FRANCISCO, CA 94143 USA
[2] HEBREW UNIV JERUSALEM, FAC AGR, SEAGRAM CTR SOIL & WATER SCI, IL-76100 REHOVOT, ISRAEL
[3] UNIV CALIF SAN FRANCISCO, SCH PHARM, DEPT PHARMACEUT CHEM, SAN FRANCISCO, CA 94143 USA
关键词
D O I
10.1021/bi00489a031
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The synthetic, amphipathic peptide GALA undergoes a pH-dependent conformational change and induces leakage of contents from large unilamellar phosphatidylcholine vesicles when in a helical conformation. The kinetics of this process have been investigated over a wide range of pH and lipid and peptide concentrations. Leakage from lipid vesicles is rapidly initiated (within 2 s) when the pH is lowered below 6 and is rapidly terminated when the pH is raised to 7.5. The leakage shows a selectivity to the size of the entrapped molecules and occurs by an all or none mechanism; vesicles either leak or retain all of their contents. Using this experimental data, we have developed a mathematical description of the kinetics of leakage induced by GALA. This model assumes that GALA becomes incorporated into the vesicle bilayer and aggregates to form a pore. Leakage occurs when a critical number of peptides assemble into a su- pramolecular aggregate in the bilayer. Leakage curves generated at lipid/peptide ratios ranging from 500/1 to 30000/1 can be well described by this formalism. On the basis of the results and the model, we suggest that GALA forms a transbilayer channel composed of 8-12 monomers. The channel diameter ranges from 5 to 10 Å. To the best of our knowledge, this is the first model that can predict the leakage kinetics of solutes entrapped in lipid vesicles induced by a pore-forming peptide. The analysis may be of general use in defining the kinetics and state of aggregation of similarly acting peptides and proteins which form multimeric assemblies in membranes. © 1990, American Chemical Society. All rights reserved.
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页码:8720 / 8728
页数:9
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共 41 条
  • [1] BARTLETT GR, 1959, J BIOL CHEM, V234, P466
  • [2] BELMONTE G, 1987, EUR BIOPHYS J BIOPHY, V14, P349
  • [3] MASS-ACTION KINETICS OF VIRUS-CELL AGGREGATION AND FUSION
    BENTZ, J
    NIR, S
    COVELL, DG
    [J]. BIOPHYSICAL JOURNAL, 1988, 54 (03) : 449 - 462
  • [4] MASS-ACTION KINETICS AND EQUILIBRIA OF REVERSIBLE AGGREGATION
    BENTZ, J
    NIR, S
    [J]. JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1981, 77 : 1249 - 1275
  • [5] INTERACTIONS BETWEEN MEMBRANES AND CYTOLYTIC PEPTIDES
    BERNHEIMER, AW
    RUDY, B
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1986, 864 (01) : 123 - 141
  • [6] MEMBRANE DAMAGE BY CHANNEL-FORMING PROTEINS
    BHAKDI, S
    TRANUMJENSEN, J
    [J]. TRENDS IN BIOCHEMICAL SCIENCES, 1983, 8 (04) : 134 - 136
  • [7] CONFORMATION OF ALAMETHICIN IN PHOSPHOLIPID-VESICLES - IMPLICATIONS FOR INSERTION MODELS
    CASCIO, M
    WALLACE, BA
    [J]. PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1988, 4 (02): : 89 - 98
  • [8] SOLVENT-ACCESSIBLE SURFACES OF PROTEINS AND NUCLEIC-ACIDS
    CONNOLLY, ML
    [J]. SCIENCE, 1983, 221 (4612) : 709 - 713
  • [9] PROTEIN DESIGN, A MINIMALIST APPROACH
    DEGRADO, WF
    WASSERMAN, ZR
    LEAR, JD
    [J]. SCIENCE, 1989, 243 (4891) : 622 - 628
  • [10] KINETICS AND MECHANISM OF HEMOLYSIS INDUCED BY MELITTIN AND BY A SYNTHETIC MELITTIN ANALOG
    DEGRADO, WF
    MUSSO, GF
    LIEBER, M
    KAISER, ET
    KEZDY, FJ
    [J]. BIOPHYSICAL JOURNAL, 1982, 37 (01) : 329 - 338