Effects of lipid composition on membrane permeabilization by sticholysin I and II, two cytolysins of the sea anemone Stichodactyla helianthus

被引:157
作者
Valcarcel, CA
Dalla Serra, M
Potrich, C
Bernhart, I
Tejuca, M
Martinez, D
Pazos, F
Lanio, ME
Menestrina, G
机构
[1] CNR, Ctr Fis Stati Aggregati, ITC, I-38050 Povo, TN, Italy
[2] Univ La Habana, Fac Biol, Dept Bioquim, Havana, Cuba
关键词
D O I
10.1016/S0006-3495(01)76244-3
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Sticholysin I and II (St I and St II), two basic cytolysins purified from the Caribbean sea anemone Stichodactyla helianthus, efficiently permeabilize lipid Vesicles by forming pores in their membranes. A general characteristic of these toxins is their preference for membranes containing sphingomyelin (SM). As a consequence, vesicles formed by equimolar mixtures of SM with phosphatidylcholine (PC) are very good targets for St I and II. To better characterize the lipid dependence of the cytolysin-membrane interaction, we have now evaluated the effect of including different lipids in the composition of the vesicles. We observed that at low doses of either St I or St II vesicles composed of SM and phosphatidic acid (PA) were permeabilized faster and to a higher extent than vesicles of PC and SM. As in the case of PC/SM mixtures, permeabilization was optimal when the molar ratio of PA/SM was similar to1. The preference for membranes containing PA was confirmed by inhibition experiments in which the hemolytic activity of St I was diminished by pre-incubation with vesicles of different composition. The inclusion of even small proportions of PA into PC/SM LUVs led to a marked increase in calcein release caused by both St I and St II, reaching maximal effect at similar to5 mol % of PA. Inclusion of other negatively charged lipids (phosphatidylserine (PS), phosphatidylglycerol (PG), phosphatidylinositol (PI), or cardiolipin (CL)), all at 5 mol %, also elicited an increase in calcein release, the potency being in the order CL approximate to PA much greater than PG approximate to PI approximate to PS. However, some boosting effect was also obtained, including the zwitterionic lipid phosphatidylethanolamine (PE) or even, albeit to a lesser extent, the positively charged lipid stearylamine (SA). This indicated that the effect was not mediated by electrostatic interactions between the cytolysin and the negative surface of the vesicles. In fact, increasing the ionic strength of the medium had only a small inhibitory effect on the interaction, but this was actually larger with uncharged vesicles than with negatively charged vesicles. A study of the fluidity of the different vesicles, probed by the environment-sensitive fluorescent dye diphenylhexatriene (DPH), showed that toxin activity was also not correlated to the average membrane fluidity. It is suggested that the insertion of the toxin channel could imply the formation in the bilayer of a nonlamellar structure, a toroidal lipid pore. In this case, the presence of lipids favoring a nonlamellar phase, in particular PA and CL, strong inducers of negative curvature in the bilayer, could help in the formation of the pore. This possibility is confirmed by the fact that the formation of toxin pores strongly promotes the rate of transbilayer movement of lipid molecules, which indicates local disruption of the lameliar structure.
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页码:2761 / 2774
页数:14
相关论文
共 65 条
[1]  
AHNERTHILGER G, 1997, CELL BIOL LAB HDB, P103
[2]  
Alouf J.E., 1991, SOURCEBOOK BACTERIAL, P147
[3]   The role of ionic strength on the enhancement of the hemolytic activity of sticholysin I, a cytolysin from Stichodactyla helianthus [J].
Alvarez, C ;
Lanio, ME ;
Tejuca, M ;
Martínez, D ;
Pazos, F ;
Campos, AM ;
Encinas, MV ;
Pertinhez, T ;
Schreier, S ;
Lissi, EA .
TOXICON, 1998, 36 (01) :165-178
[4]   Cell targeting of a pore-forming toxin, CytA delta-endotoxin from Bacillus thuringiensis subspecies israelensis, by conjugating CytA with anti-Thy 1 monoclonal antibodies and insulin [J].
Alyahyaee, SAS ;
Ellar, DJ .
BIOCONJUGATE CHEMISTRY, 1996, 7 (04) :451-460
[5]   Equinatoxins, pore-forming proteins from the sea anemone Actinia equina, belong to a multigene family [J].
Anderluh, G ;
Krizaj, I ;
Strukelj, B ;
Gubensek, F ;
Macek, P ;
Pungercar, J .
TOXICON, 1999, 37 (10) :1391-1401
[6]   Cysteine-scanning mutagenesis of an eukaryotic pore-forming toxin from sea anemone - Topology in lipid membranes [J].
Anderluh, G ;
Barlic, A ;
Podlesek, Z ;
Macek, P ;
Pungercar, J ;
Gubensek, F ;
Zecchini, ML ;
Dalla Serra, M ;
Menestrina, G .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1999, 263 (01) :128-136
[7]  
[Anonymous], [No title captured]
[8]  
[Anonymous], 1993, AMPHIPATHIC HELIX
[9]   Pore-forming proteins with built-in triggers and switches [J].
Bayley, H .
BIOORGANIC CHEMISTRY, 1995, 23 (04) :340-354
[10]   PRIMARY AND SECONDARY STRUCTURE OF A PORE-FORMING TOXIN FROM THE SEA-ANEMONE, ACTINIA-EQUINA L, AND ITS ASSOCIATION WITH LIPID VESICLES [J].
BELMONTE, G ;
MENESTRINA, G ;
PEDERZOLLI, C ;
KRIZAJ, I ;
GUBENSEK, F ;
TURK, T ;
MACEK, P .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1994, 1192 (02) :197-204