Membrane insertion: The strategies of toxins

被引:138
作者
Lesieur, C [1 ]
VecseySemjen, B [1 ]
Abrami, L [1 ]
Fivaz, M [1 ]
vanderGoot, FG [1 ]
机构
[1] FAC SCI, DEPT BIOCHIM, CH-1211 GENEVA 4, SWITZERLAND
关键词
toxins; membrane insertion; oligomerization; beta-barrel; pore;
D O I
10.3109/09687689709068435
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
Protein toxins are soluble molecules secreted by pathogenic bacteria which act at the plasma membrane or in the cytoplasm of target cells. They must therefore interact with a membrane at some point, either to modify its permeability properties or to reach the cytoplasm. As a consequence, toxins have the built-in capacity to adopt two generally incompatible states: water-soluble and transmembrane. Irrespective of their origin or function, the membrane interacting domain of most protein toxins seems to have adopted one out of two structural strategies to be able to undergo this metamorphosis. In the first group of toxins the membrane interacting domain has the structural characteristics of most known membrane proteins, i.e. it contains hydrophobic and amphipathic alpha-helices long enough to span a membrane. To render this 'membrane protein' water-soluble during the initial part of its life the hydrophobic helices are sheltered from the solvent by a barrel of amphipathic helices. In the second group of toxins the opposite strategy is adopted. The toxin is an intrinsically soluble protein and is composed mainly of beta-structure. These toxins manage to become membrane proteins by oligomerizing in order to combine amphipathic beta-sheet to generate sufficient hydrophobicity for membrane insertion to occur. Toxins from this latter group are thought to perforate the lipid bilayer as a beta-barrel such as has been described for bacterial porins, and has recently been shown for staphylococcal alpha-toxin. The two groups of toxins will be described in detail through the presentation of examples. Particular attention will be given to the beta-structure toxins, since four new structures have been solved over the past year: the staphyloccocal alpha-toxin channel, the anthrax protective antigen protoxin, the anthrax protective antigen-soluble heptamer and the CytB protoxin. Structural similarities with mammalian proteins implicated in the immune response and apoptosis will be discussed. Peptide toxins will not be covered in this review.
引用
收藏
页码:45 / 64
页数:20
相关论文
共 152 条
  • [21] DUCHE D, 1994, J BIOL CHEM, V269, P6332
  • [22] Ehrlich P, 1913, LANCET, V2, P445
  • [23] CRYSTALLIZATION AND CHARACTERIZATION OF COLICIN E1 CHANNEL-FORMING POLYPEPTIDES
    ELKINS, PA
    SONG, HY
    CRAMER, WA
    STAUFFACHER, CV
    [J]. PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 1994, 19 (02) : 150 - 157
  • [24] THE SPONTANEOUS INSERTION OF PROTEINS INTO AND ACROSS MEMBRANES - THE HELICAL HAIRPIN HYPOTHESIS
    ENGELMAN, DM
    STEITZ, TA
    [J]. CELL, 1981, 23 (02) : 411 - 422
  • [25] ANTHRAX PROTECTIVE ANTIGEN INTERACTS WITH A SPECIFIC RECEPTOR ON THE SURFACE OF CHO-K1 CELLS
    ESCUYER, V
    COLLIER, RJ
    [J]. INFECTION AND IMMUNITY, 1991, 59 (10) : 3381 - 3386
  • [26] The channel domain of colicin A is inhibited by its immunity protein through direct interaction in the Escherichia coli inner membrane
    Espesset, D
    Duche, D
    Baty, D
    Geli, V
    [J]. EMBO JOURNAL, 1996, 15 (10) : 2356 - 2364
  • [27] Different sensitivities to acid denaturation within a family of proteins: Implications for acid unfolding and membrane translocation
    Evans, LJA
    Goble, ML
    Hales, KA
    Lakey, JH
    [J]. BIOCHEMISTRY, 1996, 35 (40) : 13180 - 13185
  • [28] PH-INDUCED CONFORMATIONAL TRANSITIONS OF CRY IA(A), CRY IA(C), AND CRY IIIA DELTA-ENDOTOXINS IN BACILLUS-THURINGIENSIS
    FENG, Q
    BECKTEL, WJ
    [J]. BIOCHEMISTRY, 1994, 33 (28) : 8521 - 8526
  • [29] CRYSTAL-STRUCTURE OF THE HOLOTOXIN FROM SHIGELLA-DYSENTERIAE AT 2.5-ANGSTROM RESOLUTION
    FRASER, ME
    CHERNAIA, MM
    KOZLOV, YV
    JAMES, MNG
    [J]. NATURE STRUCTURAL BIOLOGY, 1994, 1 (01): : 59 - 64
  • [30] Apoptosis meets signal transduction: Elimination of a BAD influence
    Gajewski, TF
    Thompson, CB
    [J]. CELL, 1996, 87 (04) : 589 - 592