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通过对结构域和非结构域的计算机研究设计登革热病毒疫苗候选物。

Designing vaccine candidates against dengue virus by in silico studies on structural and nonstructural domains.

机构信息

Department of Virology, Pasteur Institute of Iran, Tehran, Iran.

Molecular Medicine Department, Biotechnology Research Center, Pasteur Institute of Iran, Tehran, Iran.

出版信息

Mol Cell Probes. 2022 Jun;63:101818. doi: 10.1016/j.mcp.2022.101818. Epub 2022 Apr 21.

DOI:10.1016/j.mcp.2022.101818
PMID:35461964
Abstract

One-third of the world's population is at risk of Dengue infection. Envelope domain 3 (EDIII) and nonstructural protein1 (NS1) proteins as the potent antigenicity regions for humoral immunity in addition to the bc loop region as a completely conserved region have been used for designing protective vaccines. We aimed to design vaccine candidates according to the bc loop, EDIII, and NS1 regions of Dengue serotype2 to be used as vaccine candidates for all serotypes of Dengue virus especially serotype 2. Firstly the bc loop region with EDII fragments at both ends as well as EDIII and NS1 regions were used which were linked with the GGGGS linker to the bc loop region. In two other strategies, the bc loop with EDII and NS1 fragments at both ends was used to increase its structural stability. Tertiary structure prediction and validation of vaccine constructs indicated that all vaccine constructs were modeled with high quality and stable structure during molecular dynamics simulation. B cell epitope mapping by Bepipred and ElliPro methods confirmed the existence of high potent epitopes in the bc loop, EDIII, and NS1 regions in both linear and conformational B cell epitopes. Furthermore, molecular docking for the bc loop region demonstrated that all designed vaccines have a higher affinity to interact with 1C19 monoclonal antibody than only the bc loop region or bc loop epitope in the protein EII. Our data of in silico studies indicated that the designed vaccines could effectively induce humoral immunity against four dengue serotypes.

摘要

世界上有三分之一的人口面临登革热感染的风险。包膜蛋白结构域 3(EDIII)和非结构蛋白 1(NS1)蛋白除了作为完全保守区域的 bc 环区域外,还是体液免疫的有效抗原性区域,已被用于设计保护性疫苗。我们旨在根据登革热血清型 2 的 bc 环、EDIII 和 NS1 区域设计疫苗候选物,用作所有登革热病毒血清型(尤其是血清型 2)的疫苗候选物。首先,使用 bc 环区域以及两端的 EDII 片段和 EDIII 和 NS1 区域,并用 GGGGS 接头将其与 bc 环区域连接。在另外两种策略中,使用 bc 环以及两端的 EDII 和 NS1 片段来增加其结构稳定性。疫苗构建体的三级结构预测和验证表明,所有疫苗构建体在分子动力学模拟过程中都具有高质量和稳定的结构。通过 Bepipred 和 ElliPro 方法进行的 B 细胞表位作图证实了 bc 环、EDIII 和 NS1 区域中存在线性和构象 B 细胞表位中的高潜在表位。此外,针对 bc 环区域的分子对接表明,与仅 bc 环区域或蛋白 EII 中的 bc 环表位相比,所有设计的疫苗都与 1C19 单克隆抗体具有更高的亲和力。我们的计算机研究数据表明,设计的疫苗可有效诱导针对四种登革热血清型的体液免疫。

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