首页> 美国卫生研究院文献>Journal of Virology >A string-of-beads vaccine comprising linked minigenes confers protection from lethal-dose virus challenge.
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A string-of-beads vaccine comprising linked minigenes confers protection from lethal-dose virus challenge.

机译:包含链接的小基因的串珠疫苗可提供对致命剂量病毒攻击的保护。

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摘要

We have previously demonstrated that induction of antiviral cytotoxic T lymphocytes (CTL), in the absence of antiviral antibodies, can confer protection against a lethal-dose virus challenge. Here we extend those findings as follows. First, three discrete viral CTL epitopes expressed from minigenes encoding peptides as short as 12 amino acids can be recognized when expressed from recombinant vaccinia virus; second, concentrating on two of the three epitopes, we show that these vaccinia virus recombinants can confer protection in a major histocompatibility complex (MHC)-restricted manner; third, the minigenes can be fused to generate a "string of beads," and the close proximity of the two epitopes within one oligopeptide does not disrupt recognition of either epitope; fourth, this string-of-beads vaccine, in contrast to the single epitope vaccines, can protect on both MHC backgrounds; and, fifth, CTL to different epitopes may act synergistically, as protection is improved when the vaccine contains more than one CTL epitope for a given MHC background.
机译:先前我们已经证明,在没有抗病毒抗体的情况下,抗病毒细胞毒性T淋巴细胞(CTL)的诱导可以赋予针对致命剂量病毒攻击的保护。在这里,我们将这些发现扩展如下。首先,当从重组痘苗病毒中表达时,可以识别由短基因编码的短至12个氨基酸的三个离散CTL表位。第二,集中于三个表位中的两个,我们表明这些牛痘病毒重组体可以以主要的组织相容性复合物(MHC)限制的方式提供保护;第三,可以融合小基因以产生“串珠”,并且两个表位在一个寡肽内的紧密邻近不会破坏对任何一个表位的识别;第四,与单抗原决定簇疫苗相比,这种串珠状疫苗可以在两种MHC背景上均具有保护作用;第五,针对给定的MHC背景,当疫苗包含不止一个CTL表位时,保护作用得到改善,因此针对不同表位的CTL可以协同作用。

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