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基于单链 MHC I 三聚体的 DNA 疫苗可预防李斯特菌感染。

Single chain MHC I trimer-based DNA vaccines for protection against Listeria monocytogenes infection.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, MO, United States.

出版信息

Vaccine. 2012 Mar 9;30(12):2178-86. doi: 10.1016/j.vaccine.2012.01.012. Epub 2012 Jan 26.

Abstract

To circumvent limitations of poor antigen presentation and immunogenicity of DNA vaccines that target induction of CD8(+) T cell immunity, we have generated single chain MHC I trimers (MHC I SCTs) composed of a single polypeptide chain with a linear composition of antigenic peptide, β2-microglobulin, and heavy chain of a MHC class I molecule connected by flexible linkers. Because of its pre-assembled nature, the SCT presents enhanced expression and presentation of the antigenic peptide/MHC complexes at the cell surface. Furthermore, DNA vaccination with a plasmid DNA encoding an SCT incorporating an immunodominant viral epitope elicited protective CD8(+) T cell responses against lethal virus infection. To extend these findings, here we tested the efficacy of SCT DNA vaccines against bacterial infections. In a mouse infection model of Listeria monocytogenes, the SCT DNA vaccine encoding H-2K(d) and the immunodominant peptide LLO 91-99 generated functional primary and memory peptide-specific CD8(+) T cells that confer partial protection against L. monocytogenes infection. DNA immunization of K(d)/LLO(91-99) SCTs generated functional memory CD8(+) T cells independently of CD4(+) T cells, although the expression of cognate or non-cognate CD4(+) helper T cell epitopes further enhanced the protective efficacy of SCTs. Our study further demonstrates that the SCT serves as a potent platform for DNA vaccines against various infectious diseases.

摘要

为了规避针对 CD8(+) T 细胞免疫诱导的 DNA 疫苗抗原呈递和免疫原性差的限制,我们构建了由一条多肽链组成的单链 MHC I 三聚体(MHC I SCT),该多肽链具有线性组成的抗原肽、β2-微球蛋白和 MHC I 分子的重链,通过柔性接头连接。由于其预组装的性质,SCT 在细胞表面增强了抗原肽/MHC 复合物的表达和呈递。此外,用编码包含免疫优势病毒表位的 SCT 的质粒 DNA 进行 DNA 疫苗接种,可引发针对致死性病毒感染的保护性 CD8(+) T 细胞应答。为了扩展这些发现,我们在这里测试了 SCT DNA 疫苗对细菌感染的疗效。在李斯特菌单核细胞增生症的小鼠感染模型中,编码 H-2K(d)和免疫优势肽 LLO 91-99 的 SCT DNA 疫苗产生了功能性的初级和记忆肽特异性 CD8(+) T 细胞,可提供针对李斯特菌感染的部分保护。K(d)/LLO(91-99)SCT 的 DNA 免疫产生了功能性的记忆 CD8(+) T 细胞,而无需 CD4(+) T 细胞,尽管共刺激或非共刺激 CD4(+)辅助 T 细胞表位的表达进一步增强了 SCT 的保护效果。我们的研究进一步证明,SCT 是针对各种传染病的有效 DNA 疫苗平台。

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