Shanghai Public Health Clinical Center and Institutes of Biomedical Sciences, Key Laboratory of Medical Molecular Virology of MOE/MOH, Fudan University, Shanghai, China.
J Virol. 2014 May;88(10):5356-68. doi: 10.1128/JVI.03664-13. Epub 2014 Feb 19.
T-cell functional avidity is a crucial determinant for efficient pathogen clearance. Although recombinant DNA priming coupled with a vaccinia-vectored vaccine (VACV) boost has been widely used to mount robust CD8+ T-cell responses, how VACV boost shapes the properties of memory CD8+ T cells remains poorly defined. Here, we characterize the memory CD8+ T cells boosted by VACV and demonstrate that the intrinsic expression of MyD88 is critical for their high functional avidity. Independent of selection of clones with high-affinity T-cell receptor (TCR) or of enhanced proximal TCR signaling, the VACV boost significantly increased T-cell functional avidity through a decrease in the activation threshold. VACV-induced inflammatory milieu is not sufficient for this improvement, as simultaneous administration of the DNA vaccine and mock VACV had no effects on the functional avidity of memory CD8+ T cells. Furthermore, reciprocal adoptive transfer models revealed that the intrinsic MyD88 pathway is required for instructing the functional avidity of CD8+ T cells boosted by VACV. Taking these results together, the intrinsic MyD88 pathway is required for the high functional avidity of VACV-boosted CD8+ T cells independent of TCR selection or the VACV infection-induced MyD88-mediated inflammatory milieu.
Functional avidity is one of the crucial determinants of T-cell functionality. Interestingly, although it has been demonstrated that a DNA prime-VACV boost regimen elicits high levels of T-cell functional avidity, how VACV changes the low avidity of CD8+ T cells primed by DNA into higher ones in vivo is less defined. Here, we proved that the enhancement of CD8+ T cell avidity induced by VACV boost is mediated by the intrinsic MyD88 pathway but not the MyD88-mediated inflammatory milieu, which might provide prompts in vaccine design.
T 细胞功能亲合力是有效清除病原体的关键决定因素。尽管使用重组 DNA 引发联合痘苗病毒载体疫苗(VACV)加强来产生强大的 CD8+T 细胞反应已被广泛应用,但 VACV 加强如何塑造记忆 CD8+T 细胞的特性仍未得到明确界定。在这里,我们描述了 VACV 加强后的记忆 CD8+T 细胞,并证明了 MyD88 的内在表达对于它们的高功能亲合力至关重要。VACV 加强通过降低激活阈值而不是通过选择高亲和力 T 细胞受体(TCR)的克隆或增强 TCR 信号的近端来显著增加 T 细胞的功能亲合力,而不依赖于 TCR 信号的增强。VACV 诱导的炎症环境不足以实现这种改善,因为同时给予 DNA 疫苗和模拟 VACV 对记忆 CD8+T 细胞的功能亲合力没有影响。此外,相互的过继转移模型表明,内在的 MyD88 途径对于指导 VACV 加强的 CD8+T 细胞的功能亲合力是必需的。综合这些结果,内在的 MyD88 途径对于 VACV 加强的 CD8+T 细胞的高功能亲合力是必需的,而与 TCR 选择或 VACV 感染诱导的 MyD88 介导的炎症环境无关。
功能亲合力是 T 细胞功能的关键决定因素之一。有趣的是,尽管已经证明 DNA 引发-VACV 加强方案可引发高水平的 T 细胞功能亲合力,但 VACV 如何在体内将 DNA 引发的低亲合力 CD8+T 细胞转变为更高的亲合力仍未得到明确界定。在这里,我们证明了 VACV 加强诱导的 CD8+T 细胞亲合力增强是由内在的 MyD88 途径介导的,而不是由 MyD88 介导的炎症环境介导的,这可能为疫苗设计提供提示。