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基于免疫信息学的方法构建针对 的多表位疫苗候选物,该疫苗利用了 的全部免疫原性表位。

Immunoinformatics driven construction of multi-epitope vaccine candidate against using its entire immunogenic epitopes.

机构信息

School of Basic Sciences, Indian Institute of Technology Mandi, Mandi, India.

Program in Bioinformatics and Computational Biology, Chulalongkorn University, Pathumwan, Thailand.

出版信息

Expert Rev Vaccines. 2021 Dec;20(12):1637-1649. doi: 10.1080/14760584.2021.1974298. Epub 2021 Sep 3.

Abstract

OBJECTIVE

infects 80 million people per year, causing malnutrition, stunted growth of children etc., but there is no vaccine available against it. We aimed to design a multimeric-subunit vaccine using comprehensive immunoinformatic approach.

RESEARCH DESIGN AND METHODS

The T and B cell epitopes were shortlisted on antigenicity, allergenicity, and toxicity from proteome data and joined with appropriate linkers. The physical characteristics of vaccine candidate was calculated and docking/molecular dynamic simulation performed to validate its robustness. The multimeric protein was codon optimized and in-silico cloned in pET28b.

RESULTS

From the 23,604 proteins of Ascaris, we filtered based on epitope prediction, localization, antigenicity, and allergenicity. Prepared a vaccine of 534 amino acid long, 56.31 kD weight and pI 4.52. Physiochemical features showed it is soluble, highly antigenic and non-allergenic. Its tertiary structure was forecasted, certified, and refined. The immunoinformatic simulation studies showed it to be potent T and B cell stimulator.

CONCLUSIONS

We identified highly antigenic peptides of Ascaris from its proteome with good potential to induce innate as well as humoral immune response. These peptides were used to design a chimeric vaccine against Ascariasis infection, which can be used for prophylactic purpose but needs experimental and clinical validation.

摘要

目的

每年感染 8000 万人,导致营养不良、儿童发育迟缓等,但目前尚无针对它的疫苗。我们旨在采用综合免疫信息学方法设计一种多聚体亚单位疫苗。

研究设计与方法

从蛋白质组数据中筛选出具有抗原性、过敏性和毒性的 T 细胞和 B 细胞表位,并与适当的接头连接。计算候选疫苗的物理特性,并进行对接/分子动力学模拟以验证其稳定性。对多聚体蛋白进行密码子优化,并在 pET28b 中进行计算机模拟克隆。

结果

从蛔虫的 23604 种蛋白质中,我们根据表位预测、定位、抗原性和过敏性进行了筛选。制备了一种 534 个氨基酸长、56.31 kD 重和 pI 4.52 的疫苗。物理化学特性表明它是可溶的、高度抗原性的和非过敏性的。预测、验证和优化了其三级结构。免疫信息学模拟研究表明,它是一种有效的 T 细胞和 B 细胞刺激剂。

结论

我们从蛔虫蛋白质组中鉴定出具有良好诱导先天和体液免疫反应潜力的高度抗原肽。这些肽被用于设计针对蛔虫感染的嵌合疫苗,可用于预防目的,但需要实验和临床验证。

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