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番茄丛矮病毒(TBSV),一种用于多价展示抗原表位和疫苗设计的通用平台。

Tomato bushy stunt virus (TBSV), a versatile platform for polyvalent display of antigenic epitopes and vaccine design.

作者信息

Kumar Shantanu, Ochoa Wendy, Singh Pratik, Hsu Catherine, Schneemann Anette, Manchester Marianne, Olson Mark, Reddy Vijay

机构信息

Department of Molecular Biology, TPC-6, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Virology. 2009 May 25;388(1):185-90. doi: 10.1016/j.virol.2009.02.051. Epub 2009 Apr 2.

Abstract

Viruses-like particles (VLPs) are frequently being used as platforms for polyvalent display of foreign epitopes of interest on their capsid surface to improve their presentation enhancing the antigenicity and host immune response. In the present study, we used the VLPs of Tomato bushy stunt virus (TBSV), an icosahedral plant virus, as a platform to display 180 copies of 16 amino acid epitopes of ricin toxin fused to the C-terminal end of a modified TBSV capsid protein (NDelta52). Expression of the chimeric recombinant protein in insect cells resulted in spontaneous assembly of VLPs displaying the ricin epitope. Cryo-electron microscopy and image reconstruction of the chimeric VLPs at 22 A resolution revealed the locations and orientation of the ricin epitope exposed on the TBSV capsid surface. Furthermore, injection of chimeric VLPs into mice generated antisera that detected the native ricin toxin. The ease of fusing of short peptides of 15-20 residues and their ability to form two kinds (T=1, T=3) of bio-nanoparticles that result in the display of 60 or 180 copies of less constrained and highly exposed antigenic epitopes makes TBSV an attractive and versatile display platform for vaccine design.

摘要

病毒样颗粒(VLPs)经常被用作在其衣壳表面多价展示感兴趣的外源表位的平台,以改善它们的呈现,增强抗原性和宿主免疫反应。在本研究中,我们使用了番茄丛生矮化病毒(TBSV)的病毒样颗粒,一种二十面体植物病毒,作为展示180个拷贝的与修饰的TBSV衣壳蛋白(NDelta52)的C末端融合的16个氨基酸的蓖麻毒素表位的平台。嵌合重组蛋白在昆虫细胞中的表达导致展示蓖麻毒素表位的病毒样颗粒的自发组装。在22埃分辨率下对嵌合病毒样颗粒进行冷冻电子显微镜观察和图像重建,揭示了蓖麻毒素表位在TBSV衣壳表面暴露的位置和方向。此外,将嵌合病毒样颗粒注射到小鼠体内产生了能检测天然蓖麻毒素的抗血清。15-20个残基的短肽易于融合,以及它们形成两种(T=1,T=3)生物纳米颗粒的能力,这导致展示60或180个拷贝的限制较少且高度暴露的抗原表位,使得TBSV成为疫苗设计中一个有吸引力且通用的展示平台。

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