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嵌合鼻病毒作为疫苗开发和蛋白质表位表征的工具。

Chimeric rhinoviruses as tools for vaccine development and characterization of protein epitopes.

作者信息

Arnold G F, Resnick D A, Smith A D, Geisler S C, Holmes A K, Arnold E

机构信息

Center for Advanced Biotechnology and Medicine, Rutgers University, Piscataway, N.J., USA.

出版信息

Intervirology. 1996;39(1-2):72-8. doi: 10.1159/000150477.

Abstract

Chimeric human rhinoviruses (HRVs) have the potential to serve as vaccines against a wide variety of diseases. Such vaccines can be developed optimally by generating libraries of chimeric HRVs displaying immunogens from dangerous pathogens or tumor cells in many different conformations. Extremely large numbers of conformationally defined presentations of foreign epitopes can be produced efficiently by flanking transplanted epitopes with linkers, or adapters, of small segments of randomized amino acids. In addition, the individual residues of the immunogenic sequences can be encoded in proportion to their prevalence in databases, generating composite immunogens that function as mimotopes. The diversity of sequences and conformations improves the likelihood of generating immunologically valuable vaccine candidates. Chimeric viruses thus generated can be propagated and purified to select for viruses whose growth and physical stability are like those of wild-type HRV. Viruses containing a foreign epitope in antigenically relevant conformations can then be captured by immunoselection with neutralizing antibodies directed against the foreign pathogen. Using this approach, we have been able to generate HRV chimeras that present V3 loop sequences of the human immunodeficiency virus type 1 (HIV-1) in immunologically relevant conformations. Antisera directed against such chimeras can neutralize multiple strains of HIV-1 in cell culture, suggesting that the HRV14:HIV-1 chimeras may be presenting their V3 loop sequences in manners that mimic those of multiple strains of HIV. Immunologically interesting chimeras can be examined using X-ray crystallography to yield detailed information about the structures of chimeras with immunogenic epitopes. This information may lead to a greater understanding of key functional and structural elements of immunogenicity. The chimeric HRV system allows one to present virtually any protein epitope or mimitope thereof, identify viruses with immunological characteristics that mimic those of the foreign pathogen, and examine the structures of these immunogenic sequences at the atomic level.

摘要

嵌合人鼻病毒(HRV)有潜力作为针对多种疾病的疫苗。通过构建嵌合HRV文库可最佳地开发此类疫苗,该文库展示来自危险病原体或肿瘤细胞的免疫原,且呈现多种不同构象。通过在移植的表位两侧连接小段随机氨基酸的接头或衔接子,可高效产生大量构象定义的外源表位呈现形式。此外,免疫原性序列的各个残基可根据其在数据库中的出现频率进行编码,生成作为模拟表位起作用的复合免疫原。序列和构象的多样性提高了产生具有免疫价值的疫苗候选物的可能性。由此产生的嵌合病毒可进行繁殖和纯化,以筛选出其生长和物理稳定性与野生型HRV相似的病毒。然后,含有抗原相关构象的外源表位的病毒可通过用针对外源病原体的中和抗体进行免疫选择来捕获。利用这种方法,我们已经能够产生以免疫相关构象呈现1型人类免疫缺陷病毒(HIV-1)V3环序列的HRV嵌合体。针对此类嵌合体的抗血清可在细胞培养中中和多种HIV-1毒株,这表明HRV14:HIV-1嵌合体可能以模拟多种HIV毒株的方式呈现其V3环序列。可使用X射线晶体学检查具有免疫学意义的嵌合体,以获得有关具有免疫原性表位的嵌合体结构的详细信息。这些信息可能有助于更深入地了解免疫原性的关键功能和结构元件。嵌合HRV系统使人们能够呈现几乎任何蛋白质表位或其模拟表位,鉴定具有模拟外源病原体免疫特征的病毒,并在原子水平上检查这些免疫原性序列的结构。

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