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多表位寨卡病毒疫苗候选物的设计 - 一项研究。

Design of a multi-epitope Zika virus vaccine candidate - an study.

机构信息

Virology Unit, Viral Hepatitis Laboratory, Institut Pasteur du Maroc, Casablanca, Morocco.

Laboratoire de Biologie et Santé (URAC34), Départment de Biologie, Faculté des Sciences Ben Msik, Hassan II University of Casablanca, Casablanca, Morocco.

出版信息

J Biomol Struct Dyn. 2023 Jun;41(9):3762-3771. doi: 10.1080/07391102.2022.2055648. Epub 2022 Mar 23.

Abstract

Zika virus (ZIKV), an RNA virus, rapidly spreads mosquito-borne sickness. Currently, there are neither effective vaccines nor therapeutics available to prevent or treat ZIKV infection. In this study, to address these unmet medical needs, we aimed to design B- and T-cell candidate multi-epitope-based subunit against ZIKV using an approach. In this study we applied immunoinformatics, molecular docking, and dynamic simulation assessments targeting the most immunogenic proteins; the capsid (C), envelope (E) proteins and the non-stuctural protein (NS1), described in our previous study, and which predicted immunodominant B and T cell epitopes. The final non-allergenic and highly antigenic multi-epitope was constituted of immunogenic screened-epitopes (3 CTL and 3 HTL) and the β-defensin as an adjuvant that have been linked using EAAAK, AAY, and GPGPG linkers, respectively. The final construct containing 143 amino acids was characterized for its allergenicity, antigenicity, and physiochemical properties; and found to be safe and immunogenic with a good prediction of solubility. The existence of IFN-γ epitopes asserts the capacity to trigger strong immune responses. Subsequently, the molecular docking among vaccine and immune receptors (TLR2/TLR4) was revealed with a good binding affinity with and stable molecular interactions. Molecular dynamics simulation confirmed the stability of the complexes. Finally, the construct was subjected to cloning demonstrating the efficiently of its expression in However, this study needs the experimental validation to demonstrate vaccine safety and efficacy.Communicated by Ramaswamy H. Sarma.

摘要

Zika 病毒(ZIKV)是一种 RNA 病毒,可迅速通过蚊子传播疾病。目前,尚无有效的疫苗或疗法可用于预防或治疗 ZIKV 感染。在这项研究中,为了满足这些未满足的医疗需求,我们旨在使用 方法设计针对 ZIKV 的 B 细胞和 T 细胞候选多表位亚单位疫苗。在这项研究中,我们应用免疫信息学、分子对接和动态模拟评估针对之前研究中描述的最免疫原性蛋白(衣壳 [C]、包膜 [E] 蛋白和非结构蛋白 [NS1]),预测免疫显性 B 和 T 细胞表位。最终的非变应原性和高抗原性多表位由免疫原性筛选表位(3 个 CTL 和 3 个 HTL)和 β-防御素组成,β-防御素作为佐剂,分别使用 EAAAK、AAY 和 GPGPG 接头连接。最终的构建体含有 143 个氨基酸,其变应原性、抗原性和物理化学特性进行了表征,发现它是安全的且具有免疫原性,并且具有良好的可溶性预测。IFN-γ 表位的存在证明了能够引发强烈免疫反应的能力。随后,揭示了疫苗和免疫受体(TLR2/TLR4)之间的分子对接,具有良好的结合亲和力和稳定的分子相互作用。分子动力学模拟证实了复合物的稳定性。最后,对构建体进行了克隆,证明了其在 中的高效表达。然而,这项研究需要进行实验验证,以证明疫苗的安全性和有效性。由 Ramaswamy H. Sarma 传达。

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