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Cooperative action of CD8 T lymphocytes and natural killer cells controls tumour growth under conditions of restricted T-cell receptor diversity

机译:CD8 T淋巴细胞和自然杀伤细胞的协同作用在有限的T细胞受体多样性条件下控制肿瘤的生长

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摘要

In mice expressing a transgenic T-cell receptor (TCR; TCRP1A) of DBA/2 origin with reactivity towards a cancer-germline antigen P1A, the number of TCRP1A CD8+ T cells in lymphoid organs is lower in DBA/2 than in B10.D2 or B10.D2(× DBA/2)F1 mice. This reduction results from haemopoietic cell autonomous differences in the differentiation of the major histocompatibility complex class I-restricted TCRP1A thymocytes controlled by DBA/2 versus B10.D2-encoded genes. We report here that the lower number of TCRP1A CD8+ T cells in DBA/2 mice correlated with their poor resistance to P1A-expressing mastocytoma solid tumours. Functional potency of CD8+ cytolytic T lymphocytes (CTL) from the above strains was not compromised, but their number after expansion appeared to be influenced by their genetic background. Intriguingly, non-transgenic DBA/2 mice resisted P1A+ tumours more efficiently despite poor representation of P1A-specific CTL. This was partly the result of their more heterogeneous TCR repertoire, including reactivity to non-P1A tumour antigens because mice that had rejected a P1A+ tumour became resistant to a P1A variant of the tumour. Such ‘cross-resistance’ did not develop in the TCRP1A transgenic mice. Nonetheless, reconstitution of RAGº/º mice with TCRP1A CD8+ T cells, with or without CD4+ T cells, or exclusive representation of TCRP1A CD8+ T cells in RAGº/º TCRP1A transgenic mice efficiently resisted the growth of P1A-expressing tumours. Natural killer cells present at a higher number in RAGº/º mice also contributed to tumour resistance, in part through an NKG2D-dependent mechanism. Hence, in the absence of a polyclonal T-cell repertoire, precursor frequencies of natural killer cells and tumour-specific CTL affect tumour resistance.
机译:表达DBA / 2起源的转基因T细胞受体(TCR; TCRP1A)对癌症生殖抗原P1A具有反应性的小鼠中,淋巴器官中TCRP1A CD8 + T细胞的数量较低DBA / 2高于B10.D2或B10.D2(×DBA / 2)F1小鼠。这种减少是由造血细胞自主性差异引起的,该差异是由DBA / 2和B10.D2编码基因控制的主要组织相容性复杂的I类限制性TCRP1A胸腺细胞分化的结果。我们在这里报告说,DBA / 2小鼠中TCRP1A CD8 + T细胞的数量较少与它们对表达P1A的肥大细胞瘤实体瘤的抗性差有关。上述菌株的CD8 + 细胞溶解性T淋巴细胞(CTL)的功能效能没有受到损害,但其扩增后的数量似乎受其遗传背景的影响。有趣的是,尽管P1A特异的CTL表现不佳,但非转基因​​DBA / 2小鼠却能更有效地抵抗P1A + 肿瘤。部分原因是它们具有更多样化的TCR组成,包括与非P1A肿瘤抗原的反应性,因为排斥P1A + 肿瘤的小鼠对P1A -变体具有抗性肿瘤。在TCRP1A转基因小鼠中未产生这种“交叉耐药性”。尽管如此,用TCRP1A CD8 + T细胞,有或没有CD4 + T细胞或单独代表TCRP1A CD8的RAGº / º小鼠重组RAGº / ºTCRP1A转基因小鼠中的 + T细胞有效抵抗表达P1A的肿瘤的生长。在RAGº / º小鼠中以更高数量存在的自然杀伤细胞也部分通过NKG2D依赖性机制促进了肿瘤抵抗。因此,在没有多克隆T细胞库的情况下,天然杀伤细胞的前体频率和肿瘤特异性CTL影响肿瘤抵抗力。

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