Department of Medical Oncology, Chongqing University Cancer Hospital, Chongqing, 400030, China.
Clinical Medicine Research Center, Xinqiao Hospital, Army Medical University, Chongqing, 400037, China.
Cancer Lett. 2023 Jun 28;564:216208. doi: 10.1016/j.canlet.2023.216208. Epub 2023 May 5.
Cancer immunotherapy targeting myeloid-derived suppressor cells (MDSCs) is one of the most promising anticancer strategies. Metabolic reprogramming is vital for MDSC activation, however, the regulatory mechanisms of cholesterol metabolic reprogramming in MDSCs remains largely unexplored. Using the receptor-interacting protein kinase 3 (RIPK3)-deficient MDSC model, a previously established tumor-infiltrating MDSC-like model, we found that the cholesterol accumulation was significantly decreased in these cells. Moreover, the phosphorylated AKT-mTORC1 signaling was reduced, and downstream SREBP2-HMGCR-mediated cholesterol synthesis was blunted. Interestingly, cholesterol deficiency profoundly elevated the immunosuppressive activity of MDSCs. Mechanistically, cholesterol elimination induced nuclear accumulation of LXRβ, thereby promoting LXRβ-RXRα heterodimer binding of a novel composite element in the promoter of Arg1. Furthermore, itraconazole enhanced the immunosuppressive activity of MDSCs to boost tumor growth by suppressing the RIPK3-AKT-mTORC1 pathway and impeding cholesterol synthesis. Our findings demonstrate that RIPK3 deficiency leads to cholesterol abrogation in MDSCs, which facilitates tumor-infiltrating MDSC activation, and highlight the therapeutic potential of targeting cholesterol synthesis to overcome tumor immune evasion.
靶向髓系来源抑制细胞(MDSCs)的癌症免疫疗法是最有前途的抗癌策略之一。代谢重编程对于 MDSC 的激活至关重要,然而,胆固醇代谢重编程在 MDSCs 中的调控机制在很大程度上仍未得到探索。使用受体相互作用蛋白激酶 3(RIPK3)缺陷型 MDSC 模型,即先前建立的肿瘤浸润性 MDSC 样模型,我们发现这些细胞中的胆固醇积累明显减少。此外,磷酸化 AKT-mTORC1 信号通路减少,下游 SREBP2-HMGCR 介导的胆固醇合成受到抑制。有趣的是,胆固醇缺乏可显著提高 MDSC 的免疫抑制活性。从机制上讲,胆固醇的消除诱导了 LXRβ 的核积累,从而促进了 LXRβ-RXRα 异二聚体在 Arg1 启动子上新型复合元件的结合。此外,伊曲康唑通过抑制 RIPK3-AKT-mTORC1 通路和阻碍胆固醇合成,增强了 MDSC 的免疫抑制活性,从而促进肿瘤生长。我们的研究结果表明,RIPK3 缺陷导致 MDSC 中的胆固醇丧失,这有利于肿瘤浸润性 MDSC 的激活,并强调了靶向胆固醇合成克服肿瘤免疫逃逸的治疗潜力。