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Narrowed TCR repertoire and viral escape as a consequence of heterologous immunity

机译:由于异源免疫力TCR范围变窄和病毒逃逸

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摘要

Why some virus-specific CD8 TCR repertoires are diverse and others restricted or “oligoclonal” has been unknown. We show here that oligoclonality and extreme clonal dominance can be a consequence of T cell cross-reactivity. Lymphocytic choriomeningitis virus (LCMV) and Pichinde virus (PV) encode NP205–212 epitopes that induce different but highly cross-reactive diverse TCR repertoires. Homologous viral challenge of immune mice only slightly skewed the repertoire and enriched for predictable TCR motifs. However, heterologous viral challenge resulted in a narrow oligoclonal repertoire with dominant clones with unpredictable TCR sequences. This shift in clonal dominance varied with the private, i.e., unique, specificity of the host’s TCR repertoire and was simulated using affinity-based computer models. The skewing differences in TCR repertoire following homologous versus heterologous challenge were observed within the same private immune system in mice adoptively reconstituted with memory CD8 T cell pools from the same donor. Conditions driving oligoclonality resulted in an LCMV epitope escape variant in vivo resembling the natural Lassa virus sequence. Thus, T cell oligoclonality, including extremes in clonal dominance, may be a consequence of heterologous immunity and lead to viral escape. This has implications for the design of peptide-based vaccines, which might unintentionally prime for skewed TCR responses to cross-reactive epitopes.
机译:为什么某些病毒特异性CD8 TCR的库为何多样化而其他受限制或“寡克隆”的原因为何仍未知。我们在这里显示寡聚和极端克隆优势可能是T细胞交叉反应的结果。淋巴细胞脉络膜脑膜炎病毒(LCMV)和皮钦德病毒(PV)编码NP205–212表位,它们诱导不同但高度交叉反应的各种TCR组成成分。免疫小鼠的同源病毒攻击仅使组库稍微偏斜,并丰富了可预测的TCR基序。然而,异源病毒攻击导致狭窄的寡克隆库,具有具有不可预测的TCR序列的显性克隆。克隆优势的转移随宿主的TCR曲目的私有性(即独特性)而异,并使用基于亲和力的计算机模型进行了模拟。在同一个私人免疫系统中,在同一个供体的记忆性CD8 T细胞池过继重建的小鼠中,在同一个私人免疫系统中观察到了同源和异源攻击后TCR组成的偏斜差异。驱动寡聚化的条件导致体内产生类似于天然拉萨病毒序列的LCMV表位逃逸变体。因此,T细胞的寡聚性,包括克隆优势的极端性,可能是异源免疫力的结果,并导致病毒逃逸。这对基于肽的疫苗的设计有影响,这种疫苗可能无意中引发了TCR对交叉反应性表位的偏斜应答。

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