RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cancer cells accelerate exhaustion of persistently activated mouse CD4(+) T cells.
Cancer cells accelerate exhaustion of persistently activated mouse CD4(+) T cells.
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大多数耗竭研究都集中在CD8 + T细胞上。在此,我们证明了CD4 + T细胞与结直肠癌细胞之间的相互生长抑制,这种抑制诱导了CD4 + T细胞中PD-1、PD-L1和PD-L2的表达。CD4 + T细胞加速耗竭的证据包括几种细胞因子(包括IL-2、IFN- 或TNF)分泌减少,以及CXCL家族趋化因子分泌升高。在小鼠模型体内,PD-L1、CTLA4和IDO1耗竭标志物的进行性表达与肿瘤生长同时发生。CD4 + T细胞耗竭的模式与在CD8 + T细胞中观察到的类似,尽管动力学有所改变。PD-L1高表达表型可通过与肿瘤细胞共培养诱导,并且除细胞接触外还由分泌因子介导。
我们的研究结果揭示,IFN- 受体敲除T细胞在与肿瘤细胞共培养时表现出PD-L1蛋白表达,表明PD-L1表达并不完全依赖于IFN-。在癌细胞存在下因持续抗原刺激而发生耗竭的TIL群体逐渐获得免疫抑制表型。癌细胞和已转化为抑制表型的T细胞所施加的抑制信号的积累加速了T细胞耗竭。
Most exhaustion studies have focused on CD8 + T cells. Here, we demonstrated reciprocal growth inhibition of CD4 + T cells and colorectal cancer cells, which induced the expression of PD-1, PD-L1, and PD-L2 in CD4 + T cells. The accelerated exhaustion of CD4 + T cells was evidenced by the reduced secretion of several cytokines, including IL-2, IFN- , or TNF , and elevated secretion of CXCL family chemokines.
Progressive expression of PD-L1, CTLA4, and IDO1 exhaustion markers occurred concomitantly with tumor growth in vivo in a mouse model. The pattern of CD4 + T cell exhaustion was analogous to that observed in CD8 + T cells, although with altered dynamics. The PD-L1-high phenotype can be induced by co-culture with tumor cells and is mediated by secreted factors in addition to cell contact.
Our findings revealed that IFN- receptor knockout T cells exhibited PD-L1 protein expression when cultured with tumor cells, suggesting that PD-L1 expression is not fully dependent on IFN- . The TIL population undergoing exhaustion due to persistent antigen stimulation in the presence of cancer cells gradually acquires an immunosuppressive phenotype. The accumulation of inhibitory signals exerted by both cancer cells and T cells, which had converted to a suppressive phenotype, accelerated T cell exhaustion.
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