安德氏真皮真皮免疫抑制蛋白的硅表征和结构建模。

Q1 Biochemistry, Genetics and Molecular Biology
Advances in Bioinformatics Pub Date : 2018-04-08 eCollection Date: 2018-01-01 DOI:10.1155/2018/7963401
Martin Omulindi Oyugi, Johnson Kangethe Kinyua, Esther Nkirote Magiri, Milcah Wagio Kigoni, Evenilton Pessoa Costa, Naftaly Wang'ombe Githaka
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引用次数: 4

摘要

蜱虫给全球畜牧业造成了约170亿至190亿美元的经济损失。由于对蜱表达的蛋白质缺乏认识和了解,重组抗蜱疫苗的开发受到很大阻碍。蜱虫分泌免疫抑制蛋白,在吸血过程中调节宿主的免疫系统;这些分子可能成为抗载体疫苗开发的目标。重组蛋白p36是一种36 kDa的免疫抑制因子,来自雌性安德氏真皮单胞虫唾液,体外抑制t淋巴细胞增殖。为了确定p36蛋白免疫抑制功能的潜在独特结构和动态特性,本研究利用生物信息学工具对安德氏d.a andersoni p36蛋白的结构进行了表征和建模。对p36蛋白家族作为合适的疫苗抗原的评估预测,在东海岸热的蜱病媒介阑尾棘头蜱(Rhipicephalus appendiculatus)中存在p36同源物,其抗原性评分为0.7701,与构成商品蜱病疫苗Tickgard™的蛋白抗原Bm86(0.7681)的抗原性评分相当。对d.m andersoni p36蛋白进行从头计算建模,得到了一个3D结构,预测了保守的抗原区域,该区域具有结合免疫调节配体的潜力,包括甘油和乳糖,发现位于暴露环内,这表明蜱虫p36蛋白可能在免疫抑制功能中起作用。在未来的研究中,有必要对这些初步结果进行实验室确认。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In Silico Characterization and Structural Modeling of <i>Dermacentor andersoni</i> p36 Immunosuppressive Protein.

In Silico Characterization and Structural Modeling of <i>Dermacentor andersoni</i> p36 Immunosuppressive Protein.

In Silico Characterization and Structural Modeling of <i>Dermacentor andersoni</i> p36 Immunosuppressive Protein.

In Silico Characterization and Structural Modeling of Dermacentor andersoni p36 Immunosuppressive Protein.

Ticks cause approximately $17-19 billion economic losses to the livestock industry globally. Development of recombinant antitick vaccine is greatly hindered by insufficient knowledge and understanding of proteins expressed by ticks. Ticks secrete immunosuppressant proteins that modulate the host's immune system during blood feeding; these molecules could be a target for antivector vaccine development. Recombinant p36, a 36 kDa immunosuppressor from the saliva of female Dermacentor andersoni, suppresses T-lymphocytes proliferation in vitro. To identify potential unique structural and dynamic properties responsible for the immunosuppressive function of p36 proteins, this study utilized bioinformatic tool to characterize and model structure of D. andersoni p36 protein. Evaluation of p36 protein family as suitable vaccine antigens predicted a p36 homolog in Rhipicephalus appendiculatus, the tick vector of East Coast fever, with an antigenicity score of 0.7701 that compares well with that of Bm86 (0.7681), the protein antigen that constitute commercial tick vaccine Tickgard™. Ab initio modeling of the D. andersoni p36 protein yielded a 3D structure that predicted conserved antigenic region, which has potential of binding immunomodulating ligands including glycerol and lactose, found located within exposed loop, suggesting a likely role in immunosuppressive function of tick p36 proteins. Laboratory confirmation of these preliminary results is necessary in future studies.

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来源期刊
Advances in Bioinformatics
Advances in Bioinformatics Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
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