A COMBINED STUDY OF AGGREGATION, MEMBRANE AFFINITY AND PORE ACTIVITY OF NATURAL AND MODIFIED MELITTIN

被引:45
作者
STANKOWSKI, S [1 ]
PAWLAK, M [1 ]
KAISHEVA, E [1 ]
ROBERT, CH [1 ]
SCHWARZ, G [1 ]
机构
[1] UNIV BASEL,BIOCTR,DEPT BIOPHYS CHEM,KLINGELBERGSTR 70,CH-4056 BASEL,SWITZERLAND
关键词
LIPID-PEPTIDE INTERACTION; BILAYER PERMEABILIZATION; MELITTIN; FORMYLATED; ACETYLATED; SUCCINYLATED; TRYPTOPHAN MODIFICATION;
D O I
10.1016/0005-2736(91)90106-I
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 pore activity of melittin and several chemically modified derivatives has been investigated using conductance measurements on planar lipid bilayers and marker release from small unilamellar vesicles. The modifications included N-terminal formylation, acetylation, succinylation and modification of the tryptophan residue. All of the compounds showed bilayer permeabilizing properties, though quantitative differences were evident. These comprised changes in the voltage dependence of the conductance, in the single-pore kinetics, in the concentration of aqueous peptide required to induce a given pore activity and in the apparent 'molecularity' reflected by the power law of its concentration dependence. A strong tendency for disrupting bilayers was not always correlated with strong pore activity. For a better understanding of these results, measurements of pore activity were complemented by studying the aggregation behavior in solution and the water-membrane partition equilibrium. Modifications of charged residues gave rise to significant changes in the aggregation properties, but had virtually no influence on the partition coefficient. The latter decreased strongly, however, as a result of tryptophan modification. Analysis of the isotherms was consistent with the assumption that the arginine residues in melittin do not contribute very much to charge accumulation at the immediate membrane/water interface.
引用
收藏
页码:77 / 86
页数:10
相关论文
共 28 条
[21]   ELECTROSTATICS OF A PEPTIDE AT A MEMBRANE WATER INTERFACE - THE PH-DEPENDENCE OF MELITTIN ASSOCIATION WITH LIPID VESICLES [J].
STANKOWSKI, S ;
SCHWARZ, G .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1025 (02) :164-172
[22]  
TALBOT JC, 1987, EUR BIOPHYS J BIOPHY, V15, P147, DOI 10.1007/BF00263679
[23]  
TERWILLIGER TC, 1982, J BIOL CHEM, V257, P6016
[24]  
TOSTESON MT, 1988, BIOPHYS J, V53, pA9
[25]   THE STING - MELITTIN FORMS CHANNELS IN LIPID BILAYERS [J].
TOSTESON, MT ;
TOSTESON, DC .
BIOPHYSICAL JOURNAL, 1981, 36 (01) :109-116
[26]   INCORPORATION OF MELITTIN INTO PHOSPHATIDYLCHOLINE BILAYERS - STUDY OF BINDING AND CONFORMATIONAL-CHANGES [J].
VOGEL, H .
FEBS LETTERS, 1981, 134 (01) :37-42
[27]   THE STRUCTURE OF MELITTIN IN MEMBRANES [J].
VOGEL, H ;
JAHNIG, F .
BIOPHYSICAL JOURNAL, 1986, 50 (04) :573-582
[28]   FLUORESCENCE AND C-13 NMR DETERMINATION OF SIDE-CHAIN AND BACKBONE DYNAMICS OF SYNTHETIC MELITTIN AND MELITTIN ANALOGS IN ISOTROPIC SOLVENTS [J].
WEAVER, AJ ;
KEMPLE, MD ;
PRENDERGAST, FG .
BIOCHEMISTRY, 1989, 28 (21) :8624-8639