Inhibition of stromal MAOA leading activation of WNT5A enhance prostate cancer immunotherapy by involving the transition of cancer-associated fibroblasts

间质细胞 癌症研究 前列腺癌 免疫系统 肿瘤微环境 免疫疗法 癌症 癌症免疫疗法 细胞毒性T细胞 癌细胞 癌变 T细胞 单胺氧化酶A 生物 医学 免疫学 单胺氧化酶 内科学 体外 生物化学
作者
Zhite Zhao,Yaohua Hu,Hui Li,Tong Lü,Xinglin He,Yifan Ma,Minli Huang,Mengyao Li,Lijun Yang,Changhong Shi
出处
期刊:Journal for ImmunoTherapy of Cancer [BMJ]
卷期号:13 (3): e010555-e010555 被引量:9
标识
DOI:10.1136/jitc-2024-010555
摘要

Background The interaction between stromal cells and the tumor immune microenvironment (TIME) is acknowledged as a critical driver in the progression of prostate cancer (PCa). Monoamine oxidase A (MAOA), a mitochondrial enzyme that catalyzes the degradation of monoamine neurotransmitters and dietary amines, has been linked to the promotion of prostate tumorigenesis, particularly when upregulated in stromal cells. However, the detailed mechanisms of MAOA’s interaction with TIME have not been fully elucidated. Methods We reanalyzed a single-cell sequencing dataset to evaluate the role of MAOA in the stroma, verify the impact of stromal MAOA alterations on CD8 + T cell responses by co-culturing stromal cells and immune cells in vitro. Furthermore, C57BL/6J mouse subcutaneous transplant tumor models and dual humanized mouse models were established to investigate the function of MAOA in vivo and the potential of its inhibitors for immunotherapy. Results Our study demonstrates that inhibiting MAOA in stromal cells facilitates the conversion of myofibroblastic cancer-associated fibroblasts (myCAFs), thereby improving the immunosuppressive environment of PCa. The strategic combination of MAOA inhibition with immune checkpoint inhibitors elicits a synergistic antitumor effect. Specifically, MAOA inhibition in stromal cells leads to increased production of WNT5A, which subsequently activates the cytotoxic capacity of CD8 + T cells through the Ca 2+ -NFATC1 signaling pathway. Conclusions Our findings highlight the critical role of MAOA in modulating cancer-associated fibroblasts within the PCa immune microenvironment, presenting a novel therapeutic strategy to augment the efficacy of immunotherapy for PCa.
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