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多种肽在RNA噬菌体MS2的病毒样颗粒上的免疫原性展示。

Immunogenic display of diverse peptides on virus-like particles of RNA phage MS2.

作者信息

Peabody David S, Manifold-Wheeler Brett, Medford Alexander, Jordan Sheldon K, do Carmo Caldeira Jerri, Chackerian Bryce

机构信息

Department of Molecular Genetics and Microbiology, University of New Mexico School of Medicine, Albuquerque, NM 87131, USA.

出版信息

J Mol Biol. 2008 Jun 27;380(1):252-63. doi: 10.1016/j.jmb.2008.04.049. Epub 2008 Apr 27.

Abstract

The high level of immunogenicity of peptides displayed in dense repetitive arrays on virus-like particles makes recombinant VLPs promising vaccine carriers. Here, we describe a platform for vaccine development based on the VLPs of RNA bacteriophage MS2. It serves for the engineered display of specific peptide sequences, but will also allow the construction of random peptide libraries from which specific binding activities can be recovered by affinity selection. Peptides representing the V3 loop of HIV gp120 and the ECL2 loop of the HIV coreceptor, CCR5, were inserted into a surface loop of MS2 coat protein. Both insertions disrupted coat VLP assembly, apparently by interfering with protein folding, but these defects were suppressed efficiently by genetically fusing coat protein's two identical polypeptides into a single-chain dimer. The resulting VLPs displayed the V3 and ECL2 peptides on their surfaces where they showed the potent immunogenicity that is the hallmark of VLP-displayed antigens. Experiments with random-sequence peptide libraries show the single-chain dimer to be highly tolerant of six, eight and ten amino acid insertions. MS2 VLPs support the display of a wide diversity of peptides in a highly immunogenic format, and they encapsidate the mRNAs that direct their synthesis, thus establishing the genotype/phenotype linkage necessary for recovery of affinity-selected sequences. The single-chain MS2 VLP therefore unites in a single structural platform the selective power of phage display with the high immunogenicity of VLPs.

摘要

在病毒样颗粒上以密集重复阵列形式展示的肽具有高度免疫原性,这使得重组病毒样颗粒成为有前景的疫苗载体。在此,我们描述了一个基于RNA噬菌体MS2病毒样颗粒的疫苗开发平台。它可用于特定肽序列的工程化展示,还能构建随机肽库,通过亲和选择从中筛选出具有特定结合活性的肽。代表HIV gp120的V3环和HIV共受体CCR5的ECL2环的肽被插入到MS2外壳蛋白的一个表面环中。这两种插入均破坏了外壳病毒样颗粒的组装,显然是通过干扰蛋白质折叠实现的,但通过将外壳蛋白的两个相同多肽基因融合成单链二聚体,这些缺陷得到了有效抑制。所得的病毒样颗粒在其表面展示了V3和ECL2肽,这些肽表现出了病毒样颗粒展示抗原的标志性强免疫原性。对随机序列肽库的实验表明,单链二聚体对六个、八个和十个氨基酸的插入具有高度耐受性。MS2病毒样颗粒能够以高度免疫原性的形式支持多种肽的展示,并且它们包裹着指导其合成的mRNA,从而建立了恢复亲和选择序列所需的基因型/表型联系。因此,单链MS2病毒样颗粒在一个单一的结构平台上结合了噬菌体展示的选择能力和病毒样颗粒的高免疫原性。

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