借力推动前列腺癌 CAR-T 细胞治疗进展
Piggybacking toward Progress for CAR T-Cell Therapy in Prostate Cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting the chromatin effector Pygo2 promotes cytotoxic T cell responses and overcomes immunotherapy resistance in prostate cancer.
Targeting the chromatin effector Pygo2 promotes cytotoxic T cell responses and overcomes immunotherapy resistance in prostate cancer.
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前列腺癌中的非炎症微环境是免疫治疗的障碍。癌症细胞内在致癌信号通路相关的遗传改变在塑造免疫景观中的作用日益受到重视。最近,我们将Pygopus 2 (PYGO2) 确定为前列腺癌1q21.3扩增子中的驱动癌基因。
在此,利用转移性前列腺腺癌的转基因小鼠模型,我们发现Pygo2缺失减缓了肿瘤进展,减少了转移,并延长了生存期。Pygo2缺失增强了细胞毒性T淋巴细胞 (CTL) 的活化和浸润,并使肿瘤细胞对T细胞杀伤敏感。在机制上,Pygo2协调了一个p53/Sp1/Kit/Ido1信号网络,以形成对CTL不利的微环境。通过遗传或药理学抑制Pygo2,增强了使用免疫检查点阻断 (ICB)、过继细胞转移或抑制髓源性抑制细胞的药物的免疫疗法的抗肿瘤疗效。在人类前列腺癌样本中,Pygo2表达与CD8 + T细胞浸润呈负相关。对ICB临床数据的分析显示,高PYGO2水平与更差的结果相关。
总之,我们的结果突显了使用Pygo2靶向治疗晚期前列腺癌以改善免疫治疗的潜在途径。
The noninflamed microenvironment in prostate cancer represents a barrier to immunotherapy. Genetic alterations underlying cancer cell-intrinsic oncogenic signaling are increasingly appreciated for their role in shaping the immune landscape. Recently, we identified Pygopus 2 ( PYGO2 ) as the driver oncogene for the amplicon at 1q21. 3 in prostate cancer.
Here, using transgenic mouse models of metastatic prostate adenocarcinoma, we found that Pygo2 deletion decelerated tumor progression, diminished metastases, and extended survival. Pygo2 loss augmented the activation and infiltration of cytotoxic T lymphocytes (CTLs) and sensitized tumor cells to T cell killing.
Mechanistically, Pygo2 orchestrated a p53/Sp1/Kit/Ido1 signaling network to foster a microenvironment hostile to CTLs. Genetic or pharmacological inhibition of Pygo2 enhanced the antitumor efficacy of immunotherapies using immune checkpoint blockade (ICB), adoptive cell transfer, or agents inhibiting myeloid-derived suppressor cells. In human prostate cancer samples, Pygo2 expression was inversely correlated with the infiltration of CD8 + T cells. Analysis of the ICB clinical data showed association between high PYGO2 level and worse outcome.
Together, our results highlight a potential path to improve immunotherapy using Pygo2-targeted therapy for advanced prostate cancer.
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