Bismuto E, Sirangelo I, Irace G
Dipartimento di Biochimica e Biofisica, Università di Napoli, Italy.
Biochim Biophys Acta. 1993 Mar 14;1146(2):213-8. doi: 10.1016/0005-2736(93)90358-7.
The main structural characteristics and the dynamic properties of melittin bound to the internal surface of reversed micelles, formed by sodium bis(2-ethyl-1-exyl)sulfosuccinate (AOT) in isooctane, were investigated by several spectroscopic techniques. Melittin has been found associated to reversed AOT micelles in a single state, thus indicating that this system behaves differently with respect to phospholipid vesicles where at least two forms of lipid associated melittin are observed. The dynamic properties of melittin in reversed AOT micelles at different water contents were examined by frequency domain fluorometry. The whole emission decay was analyzed in terms of lifetime distribution having a Lorentzian shape. The results indicated that the binding of melittin to inverted micelles determines an increase of emission heterogeneity compared to that observed for the fully extended helical monomer. This was explained in terms of a larger variety of microenvironmental conditions that the tryptophan residue experiences during its excited state. However, the conformation freedom of the peptide can be modulated by varying the micellar size.
采用多种光谱技术研究了蜂毒肽与由双(2-乙基己基)磺基琥珀酸钠(AOT)在异辛烷中形成的反相胶束内表面结合的主要结构特征和动力学性质。已发现蜂毒肽以单一状态与反相AOT胶束缔合,这表明该体系与磷脂囊泡的行为不同,在磷脂囊泡中观察到至少两种脂质结合形式的蜂毒肽。通过频域荧光法研究了不同水含量下反相AOT胶束中蜂毒肽的动力学性质。根据具有洛伦兹形状的寿命分布分析了整个发射衰减。结果表明,与完全伸展的螺旋单体相比,蜂毒肽与反相胶束的结合导致发射异质性增加。这是根据色氨酸残基在激发态期间经历的更多种微环境条件来解释的。然而,肽的构象自由度可以通过改变胶束大小来调节。