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由偶然的翻译移码产生的表位引发保护性细胞毒性T淋巴细胞反应。

Epitopes derived by incidental translational frameshifting give rise to a protective CTL response.

作者信息

Zook Matthew B, Howard Michael T, Sinnathamby Gomathinayagam, Atkins John F, Eisenlohr Laurence C

机构信息

Department of Microbiology and Immunology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107, USA.

出版信息

J Immunol. 2006 Jun 1;176(11):6928-34. doi: 10.4049/jimmunol.176.11.6928.

DOI:10.4049/jimmunol.176.11.6928
PMID:16709853
Abstract

Aberrant gene expression can be caused by several different mechanisms at the transcriptional, RNA processing, and translational level. Although most of the resulting proteins may have no significant biological function, they can be meaningful for the immune system, which is sensitive to extremely low levels of Ag. We have tested this possibility by investigating the ability of CD8+ T cells (TCD8+) to respond to an epitope whose expression results from incidental ribosomal frameshifting at a sequence element within the HSV thymidine kinase gene. This element, with no apparent functional significance, has been identified due to its ability to facilitate escape from the antiviral compound acyclovir. Using a recombinant vaccinia virus expression system, we find that in vitro and in vivo TCD8+ responses to the frameshift-dependent epitope are easily discernible. Furthermore, the in vivo response is at a sufficient level to mediate protection from a tumor challenge. Thus, the targets of immune responses to infectious agents can extend beyond the products of conventional open reading frames. On a per-cell basis, responses to such minimally expressed epitopes may be exceedingly effective due to the selective expansion of high avidity TCD8+.

摘要

异常基因表达可由转录、RNA加工和翻译水平上的几种不同机制引起。尽管由此产生的大多数蛋白质可能没有显著的生物学功能,但它们对免疫系统可能是有意义的,因为免疫系统对极低水平的抗原很敏感。我们通过研究CD8 + T细胞(TCD8 +)对一种表位的反应能力来检验这种可能性,该表位的表达是由单纯疱疹病毒胸苷激酶基因内一个序列元件处的偶然核糖体移码导致的。这个元件没有明显的功能意义,因其能促进从抗病毒化合物阿昔洛韦中逃逸而被识别。使用重组痘苗病毒表达系统,我们发现在体外和体内,TCD8 +对移码依赖性表位的反应很容易辨别。此外,体内反应水平足以介导对肿瘤攻击的保护作用。因此,针对感染因子的免疫反应靶点可以扩展到传统开放阅读框产物之外。基于每个细胞而言,由于高亲和力TCD8 +的选择性扩增,对这种低水平表达表位的反应可能极其有效。

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