Dahms T E, Szabo A G
Department of Biochemistry, University of Ottawa, Ontario, Canada.
Biophys J. 1995 Aug;69(2):569-76. doi: 10.1016/S0006-3495(95)79930-1.
The relationship between beta-sheet secondary structure and intrinsic tryptophan fluorescence parameters of erabutoxin b, alpha-cobratoxin, and alpha-bungarotoxin were examined. Nuclear magnetic resonance and x-ray crystallography have shown that these neurotoxins have comparable beta-sheet, beta-turn, and random coil secondary structures. Each toxin contains a single tryptophan (Trp) residue within its beta-sheet. The time-resolved fluorescence properties of native erabutoxin b and alpha-cobratoxin are best described by triple exponential decay kinetics, whereas native alpha-bungarotoxin exhibits more than four lifetimes. The disulphide bonds of each toxin were reduced to facilitate carboxymethylation and amidocarboxymethylation. The two different toxin derivatives of all three neurotoxins displayed triple exponential decay kinetics and were completely denatured as evidenced by circular dichroism (random coil). The concentration (c) values of the three fluorescence decay times (time-resolved fluorescence spectroscopy (TRFS)) were dramatically different from those of the native toxins. Each neurotoxin, treated with different concentrations of guanidinium hydrochloride (GuHCl), was studied both by circular dichroism and TRFS. Disappearance of the beta-sheet secondary structural features with increasing concentrations of GuHCl was accompanied by a shift in the relative contribution (c value) of each fluorescence decay time (TRFS). It was found that certain disulphide residues confer added stability to the beta-sheet secondary structure of these neurotoxins and that the center of the beta-sheet is last to unfold. These titrations show that Trp can be used as a very localized probe of secondary structure.
研究了β-折叠二级结构与海蛇毒素b、α-银环蛇毒素和α-金环蛇毒素的内在色氨酸荧光参数之间的关系。核磁共振和X射线晶体学表明,这些神经毒素具有可比的β-折叠、β-转角和无规卷曲二级结构。每种毒素在其β-折叠中都含有一个色氨酸(Trp)残基。天然海蛇毒素b和α-银环蛇毒素的时间分辨荧光特性最好用三重指数衰减动力学来描述,而天然α-金环蛇毒素表现出超过四个寿命期。每种毒素的二硫键被还原以促进羧甲基化和氨甲酰羧甲基化。所有三种神经毒素的两种不同毒素衍生物均显示三重指数衰减动力学,并且通过圆二色性(无规卷曲)证明其完全变性。三种荧光衰减时间(时间分辨荧光光谱法(TRFS))的浓度(c)值与天然毒素的浓度值有显著差异。用不同浓度的盐酸胍(GuHCl)处理的每种神经毒素,均通过圆二色性和TRFS进行研究。随着GuHCl浓度的增加,β-折叠二级结构特征的消失伴随着每个荧光衰减时间(TRFS)的相对贡献(c值)的变化。研究发现,某些二硫键残基赋予这些神经毒素的β-折叠二级结构额外的稳定性,并且β-折叠的中心最后展开。这些滴定表明,Trp可用作二级结构的非常局部的探针。