Allard David, Chrobak Pavel, Bareche Yacine, Allard Bertrand, Tessier Priscilla, Bergeron Marjorie A, Johnson Nathalie A, Stagg John
Centre de Recherche du Centre Hospitalier de l'Université de Montréal, Montréal, QC H2X 0A9, Canada.
Institut du Cancer de Montréal, Montréal, QC H2X 0A9, Canada.
Cancers (Basel). 2022 Jun 26;14(13):3130. doi: 10.3390/cancers14133130.
The ecto-nucleotidase CD73 is an important immune checkpoint in tumor immunity that cooperates with CD39 to hydrolyze pro-inflammatory extracellular ATP into immunosuppressive adenosine. While the role of CD73 in immune evasion of solid cancers is well established, its role in leukemia remains unclear. To investigate the role of CD73 in the pathogenesis of chronic lymphocytic leukemia (CLL), Eµ-TCL1 transgenic mice that spontaneously develop CLL were crossed with CD73 mice. Disease progression in peripheral blood and spleen, and CLL markers were evaluated by flow cytometry and survival was compared to CD73-proficient Eµ-TCL1 transgenic mice. We observed that CD73 deficiency significantly delayed CLL progression and prolonged survival in Eµ-TCL1 transgenic mice, and was associated with increased accumulation of IFN-γ T cells and effector-memory CD8 T cells. Neutralizing IFN-γ abrogated the survival advantage of CD73-deficient Eµ-TCL1 mice. Intriguingly, the beneficial effects of CD73 deletion were restricted to male mice. In females, CD73 deficiency was uniquely associated with the upregulation of CD39 in normal lymphocytes and sustained high PD-L1 expression on CLL cells. In vitro studies revealed that adenosine signaling via the A2a receptor enhanced PD-L1 expression on Eµ-TCL1-derived CLL cells, and a genomic analysis of human CLL samples found that PD-L1 correlated with adenosine signaling. Our study, thus, identified CD73 as a pro-leukemic immune checkpoint in CLL and uncovered a previously unknown sex bias for the CD73-adenosine pathway.
胞外核苷酸酶CD73是肿瘤免疫中的一个重要免疫检查点,它与CD39协同作用,将促炎细胞外ATP水解为免疫抑制性腺苷。虽然CD73在实体癌免疫逃逸中的作用已得到充分证实,但其在白血病中的作用仍不清楚。为了研究CD73在慢性淋巴细胞白血病(CLL)发病机制中的作用,将自发发生CLL的Eµ-TCL1转基因小鼠与CD73基因敲除小鼠杂交。通过流式细胞术评估外周血和脾脏中的疾病进展以及CLL标志物,并将生存率与CD73功能正常的Eµ-TCL1转基因小鼠进行比较。我们观察到,CD73缺陷显著延迟了Eµ-TCL1转基因小鼠的CLL进展并延长了其生存期,且与IFN-γ T细胞和效应记忆CD8 T细胞的积累增加有关。中和IFN-γ消除了CD73缺陷的Eµ-TCL1小鼠的生存优势。有趣的是,CD73缺失的有益作用仅限于雄性小鼠。在雌性小鼠中,CD73缺陷与正常淋巴细胞中CD39的上调以及CLL细胞上持续高表达的PD-L1独特相关。体外研究表明,通过A2a受体的腺苷信号增强了Eµ-TCL1来源的CLL细胞上的PD-L1表达,对人类CLL样本的基因组分析发现PD-L1与腺苷信号相关。因此,我们的研究确定CD73是CLL中的一个促白血病免疫检查点,并揭示了CD73-腺苷途径以前未知的性别偏差。