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KMO驱动的代谢重编程及其对鼻咽癌免疫细胞浸润的影响:免疫治疗的新途径

KMO-driven metabolic reconfiguration and its impact on immune cell infiltration in nasopharyngeal carcinoma: a new avenue for immunotherapy.

作者信息

Chen Nijun, Zong Yuan, Yang Chen, Li Lei, Yi Yang, Zhao Jiawen, Zhao Xiaoyu, Xie Xianfei, Sun Xingmei, Li Ning, Jiang Liting

机构信息

Department of Otolaryngology & Head and Neck Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, China.

Department of Stomatology, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine; College of Stomatology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Cancer Immunol Immunother. 2025 Feb 1;74(3):75. doi: 10.1007/s00262-024-03928-7.

Abstract

BACKGROUND

Nasopharyngeal carcinoma (NPC), a malignant epithelial tumor, is characterized by a complex tumor microenvironment (TME) and closely associated with metabolic dysfunction. Mitochondrial metabolism plays a crucial role in supporting the rapid proliferation of tumor cells. However, the specific response of mitochondria to the NPC microenvironment and their role in regulating the metabolic heterogeneity of the tumor remain poorly understood.

METHODS

Tissue samples and corresponding clinicopathological data were collected from 72 primary NPC patients and 36 non-tumor controls. Histological analysis, coupled with public transcriptomic database interrogation, was utilized to investigate mitochondrial dynamics and metabolism across different cell types. Characterizing the interactions within the tumor-immune microenvironment (TME), we identified mitochondrial genes associated with prognosis in NPC. Additionally, we explored the relationship between key mitochondrial genes, the TME, and the response to immunotherapy.

RESULTS

Malignant epithelial cells in NPC exhibited altered mitochondrial metabolism, including dysregulation of amino acid and glucose metabolism, when compared to non-malignant cells. The mitochondrial-related hub gene KMO was significantly downregulated in NPC tissues relative to normal controls. Low expression of KMO was associated with poorer survival outcomes in patients. Furthermore, KMO expression was negatively correlated with DNA repair mechanisms and hypoxia. In addition, KMO levels were inversely associated with the upregulation of both oxidative phosphorylation (OXPHOS) and glycolysis pathways within the NPC tumor microenvironment (TME). Single-cell transcriptomic analysis revealed that KMO was primarily expressed in B cells, with some contribution from myeloid cells. Importantly, KMO levels positively correlated with the infiltration of various immune cell populations, including B cells, T cells, and macrophages, as well as inflammatory signatures. Further investigation indicated that individuals with elevated KMO expression may exhibit heightened sensitivity to immune checkpoint blockade (ICB) therapy compared to those with lower KMO expression.

CONCLUSION

The mitochondrial hub gene KMO plays a pivotal role in regulating mitochondrial metabolism and modulating the immune microenvironment in NPC. As a potential prognostic biomarker, KMO may offer valuable predictive insights, and targeting KMO could represent a promising therapeutic strategy for NPC, potentially enhancing the efficacy of immunotherapies.

摘要

背景

鼻咽癌(NPC)是一种恶性上皮肿瘤,其特征在于复杂的肿瘤微环境(TME),并与代谢功能障碍密切相关。线粒体代谢在支持肿瘤细胞的快速增殖中起着至关重要的作用。然而,线粒体对鼻咽癌微环境的具体反应及其在调节肿瘤代谢异质性中的作用仍知之甚少。

方法

收集了72例原发性鼻咽癌患者和36例非肿瘤对照的组织样本及相应的临床病理数据。利用组织学分析并结合公共转录组数据库查询,研究不同细胞类型中的线粒体动力学和代谢。通过表征肿瘤免疫微环境(TME)内的相互作用,我们鉴定了与鼻咽癌预后相关的线粒体基因。此外,我们还探讨了关键线粒体基因、TME与免疫治疗反应之间的关系。

结果

与非恶性细胞相比,鼻咽癌中的恶性上皮细胞表现出线粒体代谢改变,包括氨基酸和葡萄糖代谢失调。相对于正常对照,鼻咽癌组织中线粒体相关枢纽基因KMO显著下调。KMO低表达与患者较差的生存结果相关。此外,KMO表达与DNA修复机制和缺氧呈负相关。另外,KMO水平与鼻咽癌肿瘤微环境(TME)内氧化磷酸化(OXPHOS)和糖酵解途径的上调呈负相关。单细胞转录组分析显示,KMO主要在B细胞中表达,髓样细胞也有一定贡献。重要的是,KMO水平与包括B细胞、T细胞和巨噬细胞在内的各种免疫细胞群体的浸润以及炎症特征呈正相关。进一步研究表明,与KMO表达较低的个体相比,KMO表达升高的个体可能对免疫检查点阻断(ICB)治疗表现出更高的敏感性。

结论

线粒体枢纽基因KMO在调节鼻咽癌线粒体代谢和调节免疫微环境中起关键作用。作为一种潜在的预后生物标志物,KMO可能提供有价值的预测见解,靶向KMO可能代表一种有前景的鼻咽癌治疗策略,有可能提高免疫治疗的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65fc/11787144/be527446f04c/262_2024_3928_Fig1_HTML.jpg

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