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利用结构疫苗学和免疫模拟方法,对全蛋白质组抗原表位进行特征分析,设计针对中心病毒的蛋白质特异性和全蛋白质组组合疫苗。

Characterization of proteome wide antigenic epitopes to design proteins specific and proteome-wide ensemble vaccines against heartland virus using structural vaccinology and immune simulation approaches.

机构信息

Centre for Biotechnology and Microbiology, University of Swat, Kanju, Khyber Pakhtunkhwa, Pakistan.

Central Park Medical College, Lahore, Pakistan.

出版信息

Microb Pathog. 2022 Jul;168:105592. doi: 10.1016/j.micpath.2022.105592. Epub 2022 May 18.

Abstract

Heartland virus is a single-stranded negative-sense RNA virus that infects humans and causes lethargy, myalgia, headaches, nausea, diarrhea, weight loss, arthralgia, loss of appetite, leukopenia, and easy bruising due thrombocytopenia. The unavailability of antiviral drugs for HRTV infection is a major obstacle to treat this infection, therefore supportive care management is adopted in the case of a severe ailment. In this scientific study, proteins specific and proteome-wide Helper T-cell (HTL), linear B cell, and cytotoxic T-cell (CTL) epitopes mapping joined together with suitable linkers to design multi-epitopes subunit vaccine (MEVC). The constructed four vaccines from nucleocapsid protein, replicase, glycoprotein and finally whole proteome-wide constructs demonstrated stronger antigenic and non-allergenic behavior. Physiochemical properties evaluation also reported easy and efficient expression and downstream analysis of the constructs. Molecular docking of these constructs with toll-like receptor 7 (TLR7) revealed good binding and further validation based on MM/GBSA also demonstrated stronger interaction between the vaccine constructs and TLR7. Moreover, in silico cloning reported CAI value of 0.96 for each construct and excellent GC contents percentage required for experimental analysis. Furthermore, immune simulation-based immune response surveillance revealed that upon the injection of antigen the primary and secondary antibodies were produced between 5 and 15 days, and a more robust neutralization of the antigen by the proteome-wide vaccine construct was observed. This research could pave the way for the development of dynamic and efficient vaccines that contain a unique mix of numerous HRTV derived antigenic peptides to control HRTV infection.

摘要

肠道病毒是一种感染人类并引起昏睡、肌痛、头痛、恶心、腹泻、体重减轻、关节痛、食欲不振、白细胞减少症和血小板减少症易出血的单链负义 RNA 病毒。由于缺乏针对 HRTV 感染的抗病毒药物,因此在病情严重的情况下采用支持性护理管理。在这项科学研究中,特定蛋白和全蛋白 Helper T 细胞 (HTL)、线性 B 细胞和细胞毒性 T 细胞 (CTL) 表位作图与合适的接头结合在一起,设计了多表位亚单位疫苗 (MEVC)。从核衣壳蛋白、复制酶、糖蛋白构建的四种疫苗,最后构建整个全蛋白范围的构建体,表现出更强的抗原性和非变应原性。物理化学性质评估还报告了这些构建体的易于表达和下游分析。这些构建体与 Toll 样受体 7 (TLR7) 的分子对接表明具有良好的结合,并且基于 MM/GBSA 的进一步验证也表明疫苗构建体与 TLR7 之间具有更强的相互作用。此外,基于计算机模拟的克隆报告每个构建体的 CAI 值为 0.96,并且需要进行实验分析的 GC 含量百分比也很高。此外,基于免疫模拟的免疫反应监测表明,在注射抗原后,在 5 到 15 天之间产生了主要和次要抗体,并且观察到全蛋白疫苗构建体对抗原的中和作用更加强劲。这项研究为开发包含多种 HRTV 衍生抗原肽的独特混合的动态和高效疫苗铺平了道路,以控制 HRTV 感染。

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