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首页> 外文期刊>Biophysical Journal >Ligand Binding Modulates the Structural Dynamics and Compactness of the Major Birch Pollen Allergen
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Ligand Binding Modulates the Structural Dynamics and Compactness of the Major Birch Pollen Allergen

机译:配体结合调节主要桦木花粉过敏原的结构动力学和紧密度。

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Pathogenesis-related plant proteins of class-10 (PR-10) are essential for storage and transport of small molecules. A prominent member of the PR-10 family, the major birch pollen allergen Bet v 1, is the main cause of spring pollinosis in the temperate climate zone of the northern hemisphere. Bet v 1 binds various ligand molecules to its internal cavity, and immunologic effects of the presence of ligand have been discussed. However, the mechanism of binding has remained elusive. In this study, we show that in solution Bet v 1.0101 is conformationally heterogeneous and cannot be represented by a single structure. NMR relaxation data suggest that structural dynamics are fundamental for ligand access to the protein interior. Complex formation then leads to significant rigidification of the protein along with a compaction of its 3D structure. The data presented herein provide a structural basis for understanding the immunogenic and allergenic potential of ligand binding to Bet v 1 allergens.
机译:发病机理相关的10类植物蛋白(PR-10)对于小分子的存储和运输至关重要。桦树花粉过敏原Bet v 1是PR-10家族的重要成员,是北半球温带气候区春季花粉病的主要原因。 Bet v 1将各种配体分子结合到其内部空腔,并且已经讨论了配体存在的免疫学作用。但是,绑定机制仍然难以捉摸。在这项研究中,我们表明,在解决方案中Bet v 1.0101在构象上是异质的,不能用单个结构表示。 NMR弛豫数据表明,结构动力学是配体接近蛋白质内部的基础。然后,复合物的形成会导致蛋白质的显着刚性以及3D结构的紧缩。本文提供的数据为理解配体与Bet v 1过敏原结合的免疫原性和过敏原潜力提供了结构基础。

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