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为疫苗应用设计展示口蹄疫病毒主要抗原表位的新型融合狂犬病糖蛋白。

Rational design of novel fusion rabies glycoproteins displaying a major antigenic site of foot-and-mouth disease virus for vaccine applications.

机构信息

UNL, CONICET, FBCB (School of Biochemistry and Biological Sciences), CBL (Biotechnological Center of Litoral), Ciudad Universitaria, Ruta Nacional 168 - Km 472.4 - C.C. 242 - (S3000ZAA), Santa Fe, Argentina.

UNL, FBCB (School of Biochemistry and Biological Sciences), CBL (Biotechnological Center of Litoral), Ciudad Universitaria, Ruta Nacional 168 - Km 472.4 - C.C. 242 - (S3000ZAA), Santa Fe, Argentina.

出版信息

Appl Microbiol Biotechnol. 2022 Jan;106(2):579-592. doi: 10.1007/s00253-021-11747-4. Epub 2021 Dec 31.

Abstract

Chimeric virus-like particles are self-assembling structures composed of viral proteins that had been modified to incorporate sequences from different organisms, being able to trigger immune responses against the heterologous sequence. However, the identification of suitable sites for that purpose in the carrier protein is not an easy task. In this work, we describe the generation of rabies chimeric VLPs that expose a major antigenic site of foot-and-mouth disease virus (FMDV) by identifying suitable regions in rabies glycoprotein (RVG), as a proof of concept of a novel heterologous display platform for vaccine applications. To identify adequate sites for insertion of heterologous sequences without altering the correct folding of RVG, we identified regions that were evolutionally non-conserved in Lyssavirus glycoproteins and performed a structural analysis of those regions using a 3D model of RVG trimer that we generated. The heterologous sequence was inserted in three different sites within RVG sequence. In every case, it did not affect the correct folding of the protein and was surface exposed, being recognized by anti-FMDV antibodies in expressing cells as well as in the surface of VLPs. This work sets the base for the development of a heterologous antigen display platform based on rabies VLPs. KEY POINTS: • Adequate regions for foreign epitope display in RVG were found. • G-H loop of FMDV was inserted in three regions of RVG. • The foreign epitope was detected by specific antibodies on fusion proteins. • G-H loop was detected on the surface of chimeric VLPs.

摘要

嵌合病毒样颗粒是由经过修饰以纳入来自不同生物体的序列的病毒蛋白自组装而成的结构,能够引发针对异源序列的免疫反应。然而,在载体蛋白中确定合适的位点用于此目的并非易事。在这项工作中,我们描述了通过鉴定狂犬病糖蛋白(RVG)中的合适区域来产生展示口蹄疫病毒(FMDV)主要抗原表位的狂犬病嵌合 VLPs,作为用于疫苗应用的新型异源展示平台的概念验证。为了在不改变 RVG 正确折叠的情况下确定插入异源序列的合适位点,我们鉴定了在 Lyssavirus 糖蛋白中进化上非保守的区域,并使用我们生成的 RVG 三聚体的 3D 模型对这些区域进行了结构分析。异源序列被插入 RVG 序列中的三个不同位点。在每种情况下,它都不会影响蛋白质的正确折叠,并且是表面暴露的,在表达细胞以及 VLPs 的表面被抗 FMDV 抗体识别。这项工作为基于狂犬病 VLPs 的异源抗原展示平台的开发奠定了基础。 关键点: • 在 RVG 中找到了用于展示外源表位的合适区域。 • 将 FMDV 的 G-H 环插入 RVG 的三个区域。 • 融合蛋白上的特异性抗体检测到外源表位。 • 嵌合 VLPs 的表面检测到 G-H 环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70b2/8718594/2a1ac6ea901a/253_2021_11747_Fig1_HTML.jpg

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