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原肌球蛋白过敏原的pH依赖性结构多样性决定了热稳定性。

pH-dependent structural diversity of profilin allergens determines thermal stability.

作者信息

Hofer Florian, Fischer Anna-Lena, Kamenik Anna S, Waibl Franz, Fernández-Quintero Monica L, Liedl Klaus R

机构信息

Department of General, Inorganic and Theoretical Chemistry, University of Innsbruck, Innsbruck, Austria.

出版信息

Front Allergy. 2022 Oct 17;3:1007000. doi: 10.3389/falgy.2022.1007000. eCollection 2022.

Abstract

The family of profilin allergens is a common class of proteins found in plants, viruses and various eukaryotes including mammals. Profilins are characterized by an evolutionary conserved structural fold, which is responsible for their cross-reactive nature of Immunoglobulin E (IgE) antibodies. Despite their high overall structural similarity, they exhibit substantial differences in their biophysical properties, such as thermal and pH stability. To understand the origin of these functional differences of Amb a 8, Art v 4 and Bet v 2, we performed constant pH molecular dynamics simulation in combination with Gaussian accelerated MD simulations. Depending on the respective protonation at different pH levels, we find distinct differences in conformational flexibility, which are consistent with experimentally determined melting temperatures. These variations in flexibility are accompanied by ensemble shifts in the conformational landscape and quantified and localized by residue-wise B-factors and dihedral entropies. These findings strengthen the link between flexibility of profilin allergens and their thermal stability. Thus, our results clearly show the importance of considering protonation dependent conformational ensembles in solution to elucidate biophysical differences between these structurally similar allergens.

摘要

肌动蛋白结合蛋白过敏原家族是一类常见的蛋白质,存在于植物、病毒以及包括哺乳动物在内的各种真核生物中。肌动蛋白结合蛋白的特征是具有进化保守的结构折叠,这导致了它们与免疫球蛋白E(IgE)抗体的交叉反应特性。尽管它们在整体结构上高度相似,但在生物物理性质方面,如热稳定性和pH稳定性,却表现出显著差异。为了理解Amb a 8、Art v 4和Bet v 2这些功能差异的起源,我们结合高斯加速分子动力学模拟进行了恒定pH分子动力学模拟。根据不同pH水平下各自的质子化情况,我们发现构象灵活性存在明显差异,这与实验测定的解链温度一致。这些灵活性的变化伴随着构象景观中的系综转移,并通过残基B因子和二面角熵进行量化和定位。这些发现加强了肌动蛋白结合蛋白过敏原的灵活性与其热稳定性之间的联系。因此,我们的结果清楚地表明,在溶液中考虑质子化依赖的构象系综对于阐明这些结构相似的过敏原之间的生物物理差异至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/428a/9618696/f431e98cef1a/falgy-03-1007000-g001.jpg

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