Chang Mi Ra, Dharmarajan Venkatasubramanian, Doebelin Christelle, Garcia-Ordonez Ruben D, Novick Scott J, Kuruvilla Dana S, Kamenecka Theodore M, Griffin Patrick R
Department of Molecular Therapeutics, The Scripps Research Institute , 130 Scripps Way, Jupiter, Florida 33458, United States.
ACS Chem Biol. 2016 Apr 15;11(4):1012-8. doi: 10.1021/acschembio.5b00899. Epub 2016 Jan 25.
The T cell specific RORγ isoform RORγt has been shown to be the key lineage-defining transcription factor to initiate the differentiation program of TH17 and TC17 cells, cells that have demonstrated antitumor efficacy. RORγt controls gene networks that enhance immunity including increased IL17 production and decreased immune suppression. Both synthetic and putative endogenous agonists of RORγt have been shown to increase the basal activity of RORγt enhancing TH17 cell proliferation. Here, we show that activation of RORγt using synthetic agonists drives proliferation of TH17 cells while decreasing levels of the immune checkpoint protein PD-1, a mechanism that should enhance antitumor immunity while blunting tumor associated adaptive immune resistance. Interestingly, putative endogenous agonists drive proliferation of TH17 cells but do not repress PD-1. These findings suggest that synthetic agonists of RORγt should activate TC17/TH17 cells (with concomitant reduction in the Tregs population), repress PD-1, and produce IL17 in situ (a factor associated with good prognosis in cancer). Enhanced immunity and blockage of immune checkpoints has transformed cancer treatment; thus such a molecule would provide a unique approach for the treatment of cancer.
T细胞特异性RORγ同工型RORγt已被证明是启动TH17和TC17细胞分化程序的关键谱系定义转录因子,这些细胞已显示出抗肿瘤功效。RORγt控制着增强免疫力的基因网络,包括增加白细胞介素17的产生和减少免疫抑制。RORγt的合成激动剂和假定的内源性激动剂均已显示可增加RORγt的基础活性,从而增强TH17细胞的增殖。在此,我们表明使用合成激动剂激活RORγt可驱动TH17细胞增殖,同时降低免疫检查点蛋白PD-1的水平,这一机制应能增强抗肿瘤免疫力,同时减弱肿瘤相关的适应性免疫抵抗。有趣的是,假定的内源性激动剂可驱动TH17细胞增殖,但不会抑制PD-1。这些发现表明,RORγt的合成激动剂应能激活TC17/TH17细胞(同时减少调节性T细胞群体),抑制PD-1,并在原位产生白细胞介素17(一种与癌症预后良好相关的因子)。增强免疫力和阻断免疫检查点已经改变了癌症治疗方式;因此,这样一种分子将为癌症治疗提供一种独特的方法。