Maloy K J, Burkhart C, Freer G, Rülicke T, Pircher H, Kono D H, Theofilopoulos A N, Ludewig B, Hoffmann-Rohrer U, Zinkernagel R M, Hengartner H
Department of Pathology, Institute of Experimental Immunology, Zurich, Switzerland.
J Immunol. 1999 Mar 1;162(5):2867-74.
CD4+ Th cells deliver the cognate and cytokine signals that promote the production of protective virus-neutralizing IgG by specific B cells and are also able to mediate direct antiviral effector functions. To quantitatively and qualitatively analyze the antiviral functions of CD4+ Th cells, we generated transgenic mice (tg7) expressing an MHC class II (I-Ab)-restricted TCR specific for a peptide derived from the glycoprotein (G) of vesicular stomatitis virus (VSV). The elevated precursor frequency of naive VSV-specific Th cells in tg7 mice led to a markedly accelerated and enhanced class switching to virus-neutralizing IgG after immunization with inactivated VSV. Furthermore, in contrast to nontransgenic controls, tg7 mice rapidly cleared a recombinant vaccinia virus expressing the VSV-G (Vacc-IND-G) from peripheral organs. By adoptive transfer of naive tg7 CD4+ T cells into T cell-deficient recipients, we found that 105 transferred CD4+ T cells were sufficient to induce isotype switching after challenge with a suboptimal dose of inactivated VSV. In contrast, naive transgenic CD4+ T cells were unable to adoptively confer protection against peripheral infection with Vacc-IND-G. However, tg7 CD4+ T cells that had been primed in vitro with VSV-G peptide were able to adoptively transfer protection against Vacc-IND-G. These results demonstrate that the antiviral properties of CD4+ T cells are governed by the differentiation status of the CD4+ T cell and by the type of effector response required for virus elimination.
CD4+辅助性T细胞传递同源和细胞因子信号,促进特定B细胞产生具有保护性的病毒中和性IgG,并且还能够介导直接的抗病毒效应功能。为了定量和定性分析CD4+辅助性T细胞的抗病毒功能,我们构建了转基因小鼠(tg7),其表达一种MHC II类(I-Ab)限制性TCR,该TCR对源自水疱性口炎病毒(VSV)糖蛋白(G)的肽具有特异性。tg7小鼠中初始VSV特异性辅助性T细胞的前体频率升高,导致在用灭活的VSV免疫后,向病毒中和性IgG的类别转换明显加速且增强。此外,与非转基因对照相比,tg7小鼠能迅速从外周器官清除表达VSV-G的重组痘苗病毒(Vacc-IND-G)。通过将初始tg7 CD4+ T细胞过继转移到T细胞缺陷受体中,我们发现105个转移的CD4+ T细胞在用次优剂量的灭活VSV攻击后足以诱导类别转换。相比之下,初始转基因CD4+ T细胞不能过继赋予针对Vacc-IND-G外周感染的保护作用。然而,用VSV-G肽在体外致敏的tg7 CD4+ T细胞能够过继转移针对Vacc-IND-G的保护作用。这些结果表明,CD4+ T细胞的抗病毒特性受CD4+ T细胞的分化状态以及病毒清除所需效应反应类型的支配。