Zou Xiaohong, Liu Xiaoqing, Wang Huiting, Li Zhenhua, Zhou Chen
Department of Laboratory Medicine, The Eighth Affiliated Hospital, Sun Yat-Sen University, Shenzhen, 518033, China.
Discov Oncol. 2024 Jul 24;15(1):300. doi: 10.1007/s12672-024-01162-2.
Cuproptosis is a novel type to regulate cell death with copper-dependent manner, and has been reported to involve in the occurrence and development of various malignant tumors. However, the association between cuproptosis and the tumor microenvironment (TME) of clear cell renal cell carcinoma (ccRCC) remained unclear. To address this question, we integrated the single cell RNA sequencing (scRNA-seq) datasets of ccRCC across different stages, systematically examined the distinctive expression patterns of cuproptosis-related genes (CRGs) within the TME of ccRCC, and explored the crucial signatures using the spatial transcriptome sequencing (ST-seq) dataset. The cuproptosis activities reduced in cancer tissues along with the ccRCC development, and recovered after therapy. We identified HILPDA+ ccRCC1 subtype, characterized with hypoxia, as cuproptosis susceptible cells associated with a better prognosis. The main co-expression modules of HILPDA+ ccRCC1 subtype highlighted the role in anion transport, response to oxygen species and PD-L1-PD-1 pathway. Furthermore, the immunosuppressive cells might interact with HILPDA+ ccRCC1 subtype via HAVCR2-LGALS9, C3-C3AR1, HLA-A-CD8B and HLA-C-CD8A axises to shape the cuproptosis-related TME landscape. In summary, we anticipate that this study will offer valuable insights and potential strategies of cuproptosis for therapy of ccRCC.
铜死亡是一种以铜依赖方式调节细胞死亡的新型方式,据报道其参与了各种恶性肿瘤的发生和发展。然而,铜死亡与透明细胞肾细胞癌(ccRCC)肿瘤微环境(TME)之间的关联仍不清楚。为了解决这个问题,我们整合了不同阶段ccRCC的单细胞RNA测序(scRNA-seq)数据集,系统地研究了ccRCC肿瘤微环境中铜死亡相关基因(CRGs)的独特表达模式,并使用空间转录组测序(ST-seq)数据集探索了关键特征。随着ccRCC的发展,癌组织中的铜死亡活性降低,治疗后恢复。我们鉴定出以缺氧为特征的HILPDA+ ccRCC1亚型为与较好预后相关的铜死亡敏感细胞。HILPDA+ ccRCC1亚型的主要共表达模块突出了其在阴离子转运、对活性氧的反应以及PD-L1-PD-1途径中的作用。此外,免疫抑制细胞可能通过HAVCR2-LGALS9、C3-C3AR1、HLA-A-CD8B和HLA-C-CD8A轴与HILPDA+ ccRCC1亚型相互作用,以塑造与铜死亡相关的肿瘤微环境格局。总之,我们预计这项研究将为ccRCC的治疗提供有关铜死亡的有价值见解和潜在策略。