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H-2b小鼠中细胞毒性T淋巴细胞对内源性亲嗜性和水貂细胞病变灶形成性鼠白血病病毒包膜蛋白的反应。

Cytotoxic T lymphocyte responses to the envelope proteins of endogenous ecotropic and mink cytopathic focus-forming murine leukemia viruses in H-2b mice.

作者信息

Coppola M A, Green W R

机构信息

Department of Microbiology, Dartmouth Medical School, Lebanon, New Hampshire 03756.

出版信息

Virology. 1994 Jul;202(1):500-5. doi: 10.1006/viro.1994.1370.

Abstract

To study the possible role of immune selection in the in vivo generation of pathogenic recombinant murine leukemia viruses (MuLV), we have constructed recombinant vaccinia viruses (rVV) expressing the envelope genes of three MuLV: AKR623, MCF247, and MCF13. rVV expressing either AKR623 or MCF247 env could prime H-2b mice for anti-AKR/Gross virus CTL responses, and stimulate the in vitro generation of CTL from the spleens of mice immunized with an AKR/Gross virus-positive lymphoma. MC57 (H-2b) cells infected with either 623EnvVac or 247EnvVac could serve as targets for ARK/Gross virus-specific CTL. Cells infected with the rVV expressing MCF13 env, however, were lysed much less efficiently by these CTL. 13EnvVac was also ineffective in priming or stimulating retrovirus-specific CTL. Finally, experiments with synthetic peptides and minigenes suggested that the reduced immunogenicity of the MCF13 envelope protein likely resulted from a single amino acid substitution within an immunodominant epitope of the p15E (TM) protein. The region of MCF13 env that encodes this epitope is derived from an endogenous xenotropic virus, while the allelic sequences in MCF247 are of ecotropic virus origin. These results suggest the potential for recombination within the MuLV envelope gene to allow escape from host cellular immune responses.

摘要

为了研究免疫选择在致病性重组鼠白血病病毒(MuLV)体内产生过程中的可能作用,我们构建了表达三种MuLV包膜基因的重组痘苗病毒(rVV):AKR623、MCF247和MCF13。表达AKR623或MCF247 env的rVV可以使H-2b小鼠对AKR/格罗斯病毒CTL反应产生免疫 priming,并刺激用AKR/格罗斯病毒阳性淋巴瘤免疫的小鼠脾脏中CTL的体外产生。用623EnvVac或247EnvVac感染的MC57(H-2b)细胞可作为ARK/格罗斯病毒特异性CTL的靶细胞。然而,用表达MCF13 env的rVV感染的细胞被这些CTL裂解的效率要低得多。13EnvVac在引发或刺激逆转录病毒特异性CTL方面也无效。最后,用合成肽和小基因进行的实验表明,MCF13包膜蛋白免疫原性降低可能是由于p15E(TM)蛋白免疫显性表位内的单个氨基酸取代所致。MCF13 env编码该表位的区域来自内源性异嗜性病毒,而MCF247中的等位基因序列则来自亲嗜性病毒。这些结果表明,MuLV包膜基因内可能发生重组,从而逃避宿主细胞免疫反应。

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