Leone Philippe, Menu-Bouaouiche Laurence, Peumans Willy J, Payan Françoise, Barre Annick, Roussel Alain, Van Damme Els J M, Rougé Pierre
Architecture et fonction des macromolécules biologiques, UMR-CNRS, 31, chemin Joseph-Aiguier, 13402 Marseille cedex 20, France.
Biochimie. 2006 Jan;88(1):45-52. doi: 10.1016/j.biochi.2005.07.001. Epub 2005 Aug 8.
The structure of a thaumatin-like protein from banana (Musa acuminata) fruit, an allergen with antifungal properties, was solved at 1.7-A-resolution, by X-ray crystallography. Though the banana protein exhibits a very similar overall fold as thaumatin it markedly differs from the sweet-tasting protein by the presence of a surface exposed electronegative cleft. Due to the presence of this electronegative cleft, the banana thaumatin-like protein (Ban-TLP) acquires a strong (local) electronegative character that eventually explains the observed antifungal activity. Our structural analysis also revealed the presence of conserved residues of exposed epitopic determinants that are presumably responsible for the allergenic properties of banana fruit towards susceptible individuals, and provided evidence that the Ban-TLP shares some structurally highly conserved IgE-binding epitopes with thaumatin-like proteins from fruits or pollen from other plants. In addition, some overlap was detected between the predicted IgE-binding epitopes of the Ban-TLP and IgE-binding epitopes previously identified in the mountain cedar Jun a 3 TLP aeroallergen. The presence of these common epitopes offers a molecular basis for the cross-reactivity between aeroallergens and fruit allergens.
通过X射线晶体学,以1.7埃的分辨率解析了来自香蕉(Musa acuminata)果实的类甜蛋白的结构,该蛋白是一种具有抗真菌特性的过敏原。尽管香蕉蛋白与甜蛋白具有非常相似的整体折叠结构,但由于存在一个表面暴露的电负性裂隙,它与甜蛋白明显不同。由于这个电负性裂隙的存在,香蕉类甜蛋白(Ban-TLP)具有很强的(局部)电负性特征,这最终解释了所观察到的抗真菌活性。我们的结构分析还揭示了暴露的表位决定簇的保守残基的存在,这些残基可能是香蕉果实对易感个体具有过敏特性的原因,并提供了证据表明Ban-TLP与来自其他植物果实或花粉的类甜蛋白共享一些结构上高度保守的IgE结合表位。此外,在Ban-TLP的预测IgE结合表位与先前在山地雪松Jun a 3 TLP气传变应原中鉴定的IgE结合表位之间检测到一些重叠。这些共同表位的存在为气传变应原与水果变应原之间的交叉反应提供了分子基础。