Strömstedt Adam A, Wessman Per, Ringstad Lovisa, Edwards Katarina, Malmsten Martin
Department of Pharmacy, Uppsala University, P.O. Box 580, SE-751 23 Uppsala, Sweden.
J Colloid Interface Sci. 2007 Jul 1;311(1):59-69. doi: 10.1016/j.jcis.2007.02.070. Epub 2007 Mar 2.
The effect of the lipid polar headgroup on melittin-phospholipid interaction was investigated by cryo-TEM, fluorescence spectroscopy, ellipsometry, circular dichroism, electrophoresis and photon correlation spectroscopy. In particular, focus was placed on the effect of the lipid polar headgroup on peptide adsorption to, and penetration into, the lipid bilayer, as well as on resulting colloidal stability effects for large unilamellar liposomes. The effect of phospholipid headgroup properties on melittin-bilayer interaction was addressed by comparing liposomes containing phosphatidylcholine, -acid, and -inositol at varying ionic strength. Increasing the bilayer negative charge leads to an increased liposome tolerance toward melittin which is due to an electrostatic arrest of melittin at the membrane interface. Balancing the electrostatic attraction between the melittin positive charges and the phospholipid negative charges through a hydration repulsion, caused by inositol, reduced this surface arrest and increased liposome susceptibility to the disruptive actions of melittin. Furthermore, melittin was demonstrated to induce liposome structural destabilization on a colloidal scale which coincided with leakage induction for both anionic and zwitterionic systems. The latter findings thus clearly show that coalescence, aggregation, and fragmentation contribute to melittin-induced liposome leakage, and that detailed molecular analyses of melittin pore formation are incomplete without considering also these colloidal aspects.
通过冷冻透射电子显微镜、荧光光谱、椭圆偏振法、圆二色性、电泳和光子相关光谱法研究了脂质极性头部基团对蜂毒肽 - 磷脂相互作用的影响。特别关注脂质极性头部基团对肽吸附到脂质双层以及渗透到脂质双层中的影响,以及对大单层脂质体产生的胶体稳定性影响。通过比较在不同离子强度下含有磷脂酰胆碱、磷脂酸和磷脂酰肌醇的脂质体,研究了磷脂头部基团性质对蜂毒肽 - 双层相互作用的影响。双层负电荷增加会导致脂质体对蜂毒肽的耐受性增加,这是由于蜂毒肽在膜界面处的静电阻滞。由肌醇引起的水合排斥作用平衡了蜂毒肽正电荷与磷脂负电荷之间的静电吸引力,减少了这种表面阻滞,并增加了脂质体对蜂毒肽破坏作用的敏感性。此外,已证明蜂毒肽在胶体尺度上诱导脂质体结构不稳定,这与阴离子和两性离子系统的泄漏诱导相一致。因此,后一发现清楚地表明,聚结、聚集和破碎导致了蜂毒肽诱导的脂质体泄漏,并且如果不考虑这些胶体方面,对蜂毒肽孔形成的详细分子分析是不完整的。