Cui Yongzhi, Onozawa Masahiro, Garber Haven R, Samsel Leigh, Wang Ziyao, McCoy J Philip, Burkett Sandra, Wu Xiaolin, Aplan Peter D, Mackall Crystal L
Pediatric Oncology Branch and.
Genetics Branch, Center for Cancer Research, National Cancer Institute, Bethesda, MD;
Blood. 2015 May 7;125(19):2958-67. doi: 10.1182/blood-2014-10-609271. Epub 2015 Mar 26.
T-cell receptors (TCRs) and chimeric antigen receptors recognizing tumor-associated antigens (TAAs) can now be engineered to be expressed on a wide array of immune effectors. Engineered receptors targeting TAAs have most commonly been expressed on mature T cells, however, some have postulated that receptor expression on immune progenitors could yield T cells with enhanced potency. We generated mice (survivin-TCR-transgenic [Sur-TCR-Tg]) expressing a TCR recognizing the immunodominant epitope (Sur20-28) of murine survivin during early stages of thymopoiesis. Spontaneous T-cell acute lymphoblastic leukemia (T-ALL) occurred in 100% of Sur-TCR-Tg mice derived from 3 separate founders. The leukemias expressed the Sur-TCR and signaled in response to the Sur20-28 peptide. In preleukemic mice, we observed increased cycling of double-negative thymocytes expressing the Sur-TCR and increased nuclear translocation of nuclear factor of activated T cells, consistent with TCR signaling induced by survivin expression in the murine thymus. β2M(-/-) Sur-TCR-Tg mice, which cannot effectively present survivin peptides on class I major histocompatibility complex, had significantly diminished rates of leukemia. We conclude that TCR signaling during the early stages of thymopoiesis mediates an oncogenic signal, and therefore expression of signaling receptors on developing thymocytes with specificity for TAAs expressed in the thymus could pose a risk for neoplasia, independent of insertional mutagenesis.
现在可以对识别肿瘤相关抗原(TAA)的T细胞受体(TCR)和嵌合抗原受体进行工程改造,使其在多种免疫效应细胞上表达。靶向TAA的工程化受体最常表达于成熟T细胞上,然而,一些人推测免疫祖细胞上的受体表达可能产生具有更强效力的T细胞。我们构建了在胸腺细胞生成早期表达识别小鼠生存素免疫显性表位(Sur20 - 28)的TCR的小鼠(生存素 - TCR转基因[Sur - TCR - Tg]小鼠)。来自3个不同奠基者的Sur - TCR - Tg小鼠100%发生了自发性T细胞急性淋巴细胞白血病(T - ALL)。白血病细胞表达Sur - TCR,并对Sur20 - 28肽产生信号应答。在白血病前期小鼠中,我们观察到表达Sur - TCR的双阴性胸腺细胞的增殖增加以及活化T细胞核因子的核转位增加,这与小鼠胸腺中生存素表达诱导的TCR信号传导一致。不能在I类主要组织相容性复合体上有效呈递生存素肽的β2M(-/-) Sur - TCR - Tg小鼠白血病发生率显著降低。我们得出结论,胸腺细胞生成早期的TCR信号传导介导致癌信号,因此在发育中的胸腺细胞上表达对胸腺中表达的TAA具有特异性的信号受体可能会带来肿瘤形成风险,与插入诱变无关。