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一种用于设计和验证针对必需假设蛋白的多亚基疫苗的免疫信息学方法。

An immunoinformatics approach for design and validation of multi-subunit vaccine against from essential hypothetical proteins.

作者信息

Ritaparna Prajna, Ray Muskan, Dhal Ajit Kumar, Mahapatra Rajani Kanta

机构信息

School of Biotechnology, KIIT Deemed to Be University, Bhubaneswar, Odisha 751024 India.

National Innovation Foundation, India, KIIT-TBI, Bhubaneswar, Odisha 751024 India.

出版信息

J Parasit Dis. 2024 Sep;48(3):593-609. doi: 10.1007/s12639-024-01696-w. Epub 2024 Jun 23.

Abstract

UNLABELLED

Malaria, caused by , remains a pressing global health concern. Advancements in combating this parasite involve the development of a protein vaccine. This study employs immunoinformatics to identify potential vaccine candidates within the repertoire of 218 . exported essential proteins identified through saturaturation mutagenesis study. Our screening approach narrows down to 65 -exported proteins with uncharacterized functions while exhibiting non-mutability in CDS (coding sequences). The transmembrane helix, antigenicity, allergenicity of the shortlisted proteins was assessed through diverse prediction algorithm, culminating in the identification of five promising vaccination contenders, based on probability scores. We discerned B-cell, helper T-lymphocyte, and cytotoxic T-lymphocyte epitopes. Two proteins with the most favorable epitope were harnessed to construct a multi-subunit vaccine, through judicious linker integration. Employing the I-TASSER software, three-dimensional models of the constituent proteins was obtained and was validated using diverse tools like ProSA, VERIFY3D, and ERRAT. The modelled proteins underwent Molecular Dynamics (MD) simulation in a solvent environment to evaluate the stability of the multi-subunit vaccine. Furthermore, we conducted molecular docking through the ClusPro web server to elucidate potential interactions with Toll-like receptors (TLR2 and TLR4). Docking scores revealed a pronounced affinity of the multi-subunit vaccine for TLR2. Significantly, 100 ns MD simulation of the protein-receptor complex unveiled a persistent hydrogen bond linkage between the ARG63 residue of the sub-unit vaccine and the GLU32 residue of the TLR2 receptor. These findings collectively advocate the potential efficacy of the first multi-subunit vaccine from the potential hypothetical proteins of .

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s12639-024-01696-w.

摘要

未标记

由……引起的疟疾仍然是全球紧迫的健康问题。对抗这种寄生虫的进展包括开发一种蛋白质疫苗。本研究采用免疫信息学在218种……的全部组成中识别潜在的疫苗候选物。通过饱和诱变研究鉴定出的输出必需蛋白。我们的筛选方法缩小到65种功能未表征的输出蛋白,同时在编码序列(CDS)中表现出不可突变性。通过多种预测算法评估入围蛋白的跨膜螺旋、抗原性和致敏性,最终根据概率得分确定了五种有前景的疫苗候选物。我们识别出了B细胞、辅助性T淋巴细胞和细胞毒性T淋巴细胞表位。利用两个具有最有利表位的蛋白,通过明智地整合接头构建了一种多亚基疫苗。使用I-TASSER软件获得了组成蛋白的三维模型,并使用ProSA、VERIFY3D和ERRAT等多种工具进行了验证。对建模的蛋白在溶剂环境中进行分子动力学(MD)模拟,以评估多亚基疫苗的稳定性。此外,我们通过ClusPro网络服务器进行分子对接,以阐明与Toll样受体(TLR2和TLR4)的潜在相互作用。对接分数显示多亚基疫苗对TLR2有明显的亲和力。重要的是,对蛋白-受体复合物进行100纳秒的MD模拟揭示了亚基疫苗的ARG63残基与TLR2受体的GLU32残基之间存在持久的氢键连接。这些发现共同表明了第一种来自……潜在假设蛋白的多亚基疫苗的潜在效力。

补充信息

在线版本包含可在10.1007/s12639-024-01696-w获取的补充材料。

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