Structural homology of mite profilins to plant profilins is not indicative of allergic cross-reactivity.

IF 4.7 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-26 DOI:10.1515/hsz-2023-0366
A. O'Malley, Sahana Sankaran, Avery Carriuolo, Kriti Khatri, Krzysztof Kowal, M. Chruszcz
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Abstract

Structural and allergenic characterization of mite profilins has not been previously pursued to a similar extent as plant profilins. Here, we describe structures of profilins originating from Tyrophagus putrescentiae (registered allergen Tyr p 36.0101) and Dermatophagoides pteronyssinus (here termed Der p profilin), which are the first structures of profilins from Arachnida. Additionally, the thermal stabilities of mite and plant profilins are compared, suggesting that the high number of cysteine residues in mite profilins may play a role in their increased stability. We also examine the cross-reactivity of plant and mite profilins as well as investigate the relevance of these profilins in mite inhalant allergy. Despite their high structural similarity to other profilins, mite profilins have low sequence identity with plant and human profilins. Subsequently, these mite profilins most likely do not display cross-reactivity with plant profilins. At the same time the profilins have highly conserved poly(l-proline) and actin binding sites.
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螨虫廓清蛋白与植物廓清蛋白的结构同源性并不表明存在过敏性交叉反应。
螨虫廓清蛋白的结构和过敏原特性研究以前还没有达到与植物廓清蛋白类似的程度。在这里,我们描述了源自Tyrophagus putrescentiae(注册过敏原Tyr p 36.0101)和Dermatophagoides pteronyssinus(此处称为Der p廓清蛋白)的廓清蛋白的结构,这是蛛形纲廓清蛋白的首次结构描述。此外,我们还比较了螨虫廓清蛋白和植物廓清蛋白的热稳定性,结果表明螨虫廓清蛋白中大量的半胱氨酸残基可能是其稳定性提高的原因之一。我们还研究了植物和螨虫廓清蛋白的交叉反应,并探讨了这些廓清蛋白与螨虫吸入性过敏的相关性。尽管螨虫廓清蛋白与其他廓清蛋白的结构高度相似,但它们与植物和人类廓清蛋白的序列同一性却很低。因此,这些螨虫廓清蛋白很可能不会与植物廓清蛋白产生交叉反应。同时,这些螨虫廓清蛋白具有高度保守的聚(l-脯氨酸)和肌动蛋白结合位点。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
期刊介绍: ACS Applied Bio Materials is an interdisciplinary journal publishing original research covering all aspects of biomaterials and biointerfaces including and beyond the traditional biosensing, biomedical and therapeutic applications. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important bio applications. The journal is specifically interested in work that addresses the relationship between structure and function and assesses the stability and degradation of materials under relevant environmental and biological conditions.
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