Protein stability and conformational rearrangements in lipid bilayers: Linear gramicidin, a model system

被引:34
作者
Cotten, M
Xu, F
Cross, TA
机构
[1] FLORIDA STATE UNIV,INST MOL BIOPHYS,NATL HIGH MAGNET FIELD LAB,TALLAHASSEE,FL 32306
[2] FLORIDA STATE UNIV,DEPT CHEM,TALLAHASSEE,FL 32306
关键词
D O I
10.1016/S0006-3495(97)78097-4
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no change in the molecular fold of this dimeric peptide in a low dielectric isotropic organic solvent, but the molecular folds are dramatically different in a lipid bilayer environment. The indoles of gramicidin A interact with the anisotropic bilayer environment to induce a change in the molecular fold. The double-helical fold of gramicidin M, as opposed to the single-stranded structure of gramicidin A, is not compatible with ion conductance. Gramicidin A/gramicidin M hybrid structures have also been prepared, and like gramicidin M homodimers, these dimeric hybrids appear to have a double-helical fold, suggesting that a couple of indoles are being buried in the bilayer interstices. To achieve this equilibrium structure (i.e., minimum energy conformation), incubation at 68 degrees C for 2 days is required. Kinetically trapped metastable structures may be more common in lipid bilayers than in an aqueous isotropic environment. Structural characterizations in the bilayers were achieved with solid-state NMR-derived orientational constraints from uniformly aligned lipid bilayer samples, and characterizations in organic solvents were accomplished by solution NMR.
引用
收藏
页码:614 / 623
页数:10
相关论文
共 53 条
  • [1] CONFORMATION STATES OF GRAMICIDIN A ALONG THE PATHWAY TO THE FORMATION OF CHANNELS IN MODEL MEMBRANES DETERMINED BY 2D NMR AND CIRCULAR-DICHROISM SPECTROSCOPY
    ABDULMANAN, N
    HINTON, JF
    [J]. BIOCHEMISTRY, 1994, 33 (22) : 6773 - 6783
  • [2] MOLECULAR DETERMINANTS OF CHANNEL FUNCTION
    ANDERSEN, OS
    KOEPPE, RE
    [J]. PHYSIOLOGICAL REVIEWS, 1992, 72 (04) : S89 - S158
  • [3] ANDERSEN OS, 1984, ANN REV PHYSL, V46, P168
  • [4] Conformational trapping in a membrane environment: A regulatory mechanism for protein activity?
    Arumugam, S
    Pascal, S
    North, CL
    Hu, W
    Lee, KC
    Cotten, M
    Ketchem, RR
    Xu, F
    Brenneman, M
    Kovacs, F
    Tian, F
    Wang, A
    Huo, S
    Cross, TA
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (12) : 5872 - 5876
  • [5] KINETICS VERSUS THERMODYNAMICS IN PROTEIN-FOLDING
    BAKER, D
    AGARD, DA
    [J]. BIOCHEMISTRY, 1994, 33 (24) : 7505 - 7509
  • [6] CONFORMATIONAL TRANSITIONS OF GRAMICIDIN A IN PHOSPHOLIPID MODEL MEMBRANES - A HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY ASSESSMENT
    BANO, MC
    BRACO, L
    ABAD, C
    [J]. BIOCHEMISTRY, 1991, 30 (04) : 886 - 894
  • [7] HPLC STUDY ON THE HISTORY DEPENDENCE OF GRAMICIDIN-A CONFORMATION IN PHOSPHOLIPID MODEL MEMBRANES
    BANO, MC
    BRACO, L
    ABAD, C
    [J]. FEBS LETTERS, 1989, 250 (01) : 67 - 71
  • [8] BANO MD, 1988, J CHROMATOGR, V458, P105
  • [9] Insertion and hairpin formation of membrane proteins: A Monte Carlo study
    Baumgartner, A
    [J]. BIOPHYSICAL JOURNAL, 1996, 71 (03) : 1248 - 1255
  • [10] AMINO-ACID-SEQUENCE MODULATION OF GRAMICIDIN CHANNEL FUNCTION - EFFECTS OF TRYPTOPHAN-TO-PHENYLALANINE SUBSTITUTIONS ON THE SINGLE-CHANNEL CONDUCTANCE AND DURATION
    BECKER, MD
    GREATHOUSE, DV
    KOEPPE, RE
    ANDERSEN, OS
    [J]. BIOCHEMISTRY, 1991, 30 (36) : 8830 - 8839