首页> 外文期刊>Journal of Molecular Biology >Crystal Structure of the Major Malassezia sympodialis Allergen Mala s 1 Reveals a β-Propeller Fold: A Novel Fold Among Allergens
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Crystal Structure of the Major Malassezia sympodialis Allergen Mala s 1 Reveals a β-Propeller Fold: A Novel Fold Among Allergens

机译:主要的共济会的疟原虫变应原Mala s 1的晶体结构揭示了β螺旋桨折叠:变应原中的一种新型折叠。

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摘要

Atopic eczema (AE) is a chronic inflammatory disease in which genetic predisposition and environmental factors such as microorganisms contribute to the symptoms. The yeast Malassezia Sympodialis, part of the normal human cutaneous flora, can act as an allergen eliciting specific IgE and T-cell reactivity in patients with AE. The major M. sympodialis allergen Mala s 1 is localized mainly in the yeast cell wall and exposed on the cell surface. Interestingly, Mala s 1 does not exhibit any significant sequence homology to known proteins. Here we present the crystal structure of Mala s 1 determined by single-wavelength anomalous dispersion techniques using selenomethionine-substituted Mala s 1. Mala s 1 folds into a 6-fold β-propeller, a novel fold among allergens. The putative active site of Mala s 1 overlaps structurally to putative active sites in potential homologues, Q4P4P8 and Tri 14, from the plant parasites Ustilago maydis and Gibberella zeae, respectively. This resemblance suggests that Mala s 1 and the parasite proteins may have similar functions. In addition, we show that Mala s 1 binds to the phosphoinositides (PI) PI(3)P, PI(4)P, and PI(5)P, lipids possibly playing a role in the localization of Mala s 1 to the cell surface. The crystal structure of Mala s 1 will provide insights into the role of this major allergen in the host–microbe interactions and induction of an allergic response in AE.
机译:特应性湿疹(AE)是一种慢性炎症性疾病,其遗传易感性和环境因素(例如微生物)促成了症状。酵母Malassezia Sympodialis是正常人皮肤菌群的一部分,可作为过敏原,引起AE患者特定的IgE和T细胞反应性。主要的S. sympodialis变应原Mala s 1主要位于酵母细胞壁中,并暴露于细胞表面。有趣的是,Mala s 1与已知蛋白质没有任何显着的序列同源性。在这里,我们介绍通过使用硒代蛋氨酸取代的Mala 1通过单波长异常分散技术确定的Mala s 1的晶体结构。Malas 1折叠成6倍的β螺旋桨,是变应原中的一种新的折叠。 Mala s 1的推定活性位点与潜在的同源物Q4P4P8和Tri 14的推定活性位点在结构上重叠,分别来自植物寄生虫Ustilago maydis和Gibberella zeae。这种相似表明,Mala s 1和寄生虫蛋白可能具有相似的功能。此外,我们显示Mala s 1结合到磷酸肌醇(PI)PI(3)P,PI(4)P和PI(5)P,脂质可能在Mala s 1定位到细胞中发挥作用表面。 Mala s 1的晶体结构将提供这一主要变应原在宿主与微生物相互作用以及诱发AE过敏反应中的作用的见解。

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