Hellmann N, Schwarz G
Department of Biophysical Chemistry, Biocenter of the University of Basel, Klingelbergstr. 70, Basel, Switzerland.
Biochim Biophys Acta. 1998 Mar 2;1369(2):267-77. doi: 10.1016/s0005-2736(97)00230-7.
Mastoparan-X, a wasp venom factor, is a membrane active peptide whose binding to lipid vesicles is of basic interest towards an analysis of its functions. Titration of aqueous peptide solutions with liposomes allows the determination of the association isotherm, i.e. a plot of bound peptide per lipid versus the free peptide concentration. We have scrutinised the various steps in the evaluation procedure, considering circular dichroism as well as fluorescence intensity as possible signals for the binding process. First of all the measured data had to be corrected for light scattering effects which may otherwise appreciably falsify the final results. Uncertainties due to inherent difficulties regarding the reproducibility of lipid preparations and inevitable titration errors have to be considered. The consequences of these errors for the quantitative analysis of the titration curves were investigated. The plotted curves can be reasonably well fitted by a functional relationship derived from a Gouy-Chapman model approach that assumes a partitioning of monomeric peptide. The two relevant parameters, partition coefficient and effective charge number, and their error ranges have been determined for mastoparan-X and a series of phosphatidylcholine vesicle sizes and various ionic strengths. These findings show that the applied analysis implies a sufficient basis for calculations of the amount of lipid bound peptide in practice. However, the possible existence of peptide aggregates cannot generally be excluded from a formal monomer associated curve fit as indicated by computer simulations.
蜂毒肽-X是一种黄蜂毒液因子,是一种膜活性肽,其与脂质囊泡的结合对于分析其功能具有重要意义。用脂质体滴定肽水溶液可确定结合等温线,即每脂质结合肽与游离肽浓度的关系图。我们仔细研究了评估过程中的各个步骤,将圆二色性以及荧光强度视为结合过程的可能信号。首先,必须对测量数据进行光散射效应校正,否则可能会明显歪曲最终结果。必须考虑由于脂质制剂的可重复性存在固有困难以及不可避免的滴定误差所导致的不确定性。研究了这些误差对滴定曲线定量分析的影响。绘制的曲线可以通过从假设单体肽分配的 Gouy-Chapman 模型方法导出的函数关系进行合理拟合。已经确定了蜂毒肽-X以及一系列磷脂酰胆碱囊泡大小和各种离子强度的两个相关参数,分配系数和有效电荷数及其误差范围。这些发现表明,所应用的分析为实际计算脂质结合肽的量提供了充分的基础。然而,如计算机模拟所示,从形式上的单体相关曲线拟合中通常不能排除肽聚集体的可能存在。