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13 组变应原的表达、表位预测及 IgE 结合

Expression, epitope prediction and IgE-binding of the group 13 allergen.

作者信息

Wang Nan, Zhou Ying, Wu Meili, Zhu Hanting, Cui Yubao

机构信息

Department of Basic Medicine, Jiangsu Vocational College of Medicine, Yancheng, Jiangsu 224005, P.R. China.

Department of Pediatrics Laboratory, Wuxi Children's Hospital, Wuxi, Jiangsu 214023, P.R. China.

出版信息

Exp Ther Med. 2020 Nov;20(5):21. doi: 10.3892/etm.2020.9149. Epub 2020 Aug 27.

Abstract

Storage mites, such as , are an important source of allergens that cause allergic diseases in humans. It has previously been indicated that has a high sensitization rate as an allergen in some Asian and European countries. Identifying and cloning the allergens in this species may enable improved diagnostic and therapeutic approaches. The aim of the present study was to clone and sequence the group 13 allergen (Tyr p 13) isolated from storage mites in China, to use bioinformatics tools to model its biophysical characteristics and to induce protein expression to test its IgE-binding activity. The full-length cDNA comprised 486 bp and was predicted to include a signal peptide of 22 amino acids. Its secondary structure was shown to comprise an α-helix (10.79%), extended strand (33.81%) and random coils (55.40%). Using homology modeling, the present study constructed a reasonable tertiary structure of Tyr p 13. Linear Bcell epitopes at amino acids 47-53, 70-76, 81-86, 101-105 and 112120 were predicted. Three discontinuous B-cell epitopes were also predicted: i) 47, 48, 49, 50, 51, 52, 53, 70, 71, 72 and 73; ii) 91, 92, 93, 94, 112, 113, 114, 115, 116, 117, 118, 119, 120, 121 and 138; and iii) 74, 76, 79, 81, 82, 83, 84, 86, 101, 102, 103, 104 and 105. SDS-PAGE identified a specific band at the predicted molecular weight of the recombinant Tyr p 13 (rTyr p 13), demonstrating its successful expression. The rTyr p 13 bound to IgE in the serum of 13.2% (5/38) of patients allergic to , according to ELISA. The successful cloning of Tyr p 13 and basic bioinformatics analysis of the protein provided a foundation for the further study of this allergen with regards to the diagnosis and treatment of patients allergic to storage mites. These results provided a theoretical basis for the design of rTyr p 13 with modified B-cell epitopes.

摘要

仓储螨类,如,是导致人类过敏性疾病的重要过敏原来源。此前已有研究表明,在一些亚洲和欧洲国家,作为过敏原具有较高的致敏率。鉴定和克隆该物种中的过敏原可能有助于改进诊断和治疗方法。本研究的目的是克隆并测序从中国仓储螨中分离出的第13组过敏原(Tyr p 13),使用生物信息学工具对其生物物理特性进行建模,并诱导蛋白表达以测试其IgE结合活性。全长cDNA包含486 bp,预计包含一个22个氨基酸的信号肽。其二级结构显示由α-螺旋(10.79%)、延伸链(33.81%)和无规卷曲(55.40%)组成。通过同源建模,本研究构建了合理的Tyr p 13三级结构。预测了氨基酸47 - 53、70 - 76、81 - 86、101 - 105和112 - 120处的线性B细胞表位。还预测了三个不连续的B细胞表位:i)47、48、49、50、51、52、53、70、71、72和73;ii)91、92、93、94、112、113、114、115、116、117、118、119、120、121和138;iii)74、76、79、81、82、83、84、86、101、102、103、104和105。SDS - PAGE在重组Tyr p 13(rTyr p 13)预测分子量处鉴定出一条特异性条带,证明其成功表达。根据ELISA检测,rTyr p 13与13.2%(5/38)对过敏的患者血清中的IgE结合。Tyr p 13的成功克隆及对该蛋白的基础生物信息学分析为进一步研究该过敏原用于诊断和治疗对仓储螨过敏的患者奠定了基础。这些结果为设计具有修饰B细胞表位的rTyr p 13提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ca4/7471918/36ed12ba39a5/etm-20-05-09149-g00.jpg

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