A new thinking: deciphering the aberrance and clinical implication of copper-death signatures in clear cell renal cell carcinoma.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Aimin Jiang, Peng Luo, Ming Chen, Yu Fang, Bing Liu, Zhenjie Wu, Le Qu, Anbang Wang, Linhui Wang, Chen Cai
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引用次数: 3

Abstract

Rationale: Recent research has indicated that cuprotosis, or copper induced cell death, is a novel type of cell death that could be utilized as a new weapon for cancer management. However, the characteristics and implications of such signatures in cancers, especially in clear cell renal cell cancer (ccRCC), remain elusive.

Methods: Expression, methylation, mutation, clinical information, copy number variation, functional implication, and drug sensitivity data at the pan-cancer level were collected from The Cancer Genome Atlas. An unsupervised clustering algorithm was applied to decipher ccRCC heterogeneity. Immune microenvironment construction, immune therapy response, metabolic pattern, and cancer progression signature between subgroups were also investigated.

Results: Cuprotosis related genes were specifically downregulated in various cancer tissues compared with normal tissues and were correlated with hypermethylation and copy number variation. Cuprotosis scores were also dysregulated in tumor tissues, and we found that such a signature could positively regulate oxidative phosphorylation and Myc and negatively regulate epithelial mesenchymal translation and myogenesis pathways. CPCS1 (cuprotosis scores high) and CPCS2 (cuprotosis scores low) in ccRCC displayed distinctive clinical profiles and biological characteristics; the CPCS2 subtype had a higher clinical stage and a worse prognosis and might positively regulate cornification and epidermal cell differentiation to fuel cancer progression. CPCS2 also displayed a higher tumor mutation burden and low tumor stemness index, while it led to a low ICI therapy response and dysfunctional tumor immunity state. The genome-copy numbers of CPCS2, including arm- gain and arm- loss, were higher than those of CPCS1. The prognostic model constructed based on subgroup biomarkers exerted satisfactory performance in both the training and validation cohorts. In addition, overexpression of the copper death activator DLAT suppressed the malignant ability, including cell migration and proliferation, of renal cell lines in vitro and in vivo. Finally, activation of cuprotosis in tumors could enhance antitumor immunity through dsDNA-cGAS-STING signaling in ccRCC.

Conclusion: The activation of cuprotosis might function as a promising approach among multiple cancers. The cuprotosis related signatures could reshape tumor immunity in the ccRCC microenvironment via cGAS-STING signal, thus activating tumor antigen-presenting process. Upregulation of DLAT expression in ccRCC cell lines could reactivate the copper death pattern and be treated as a suitable target for ccRCC.

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一种新的思考:解读透明细胞肾细胞癌中铜-死亡特征的异常及其临床意义。
理论基础:最近的研究表明,铜致细胞死亡是一种新型的细胞死亡,可以作为癌症治疗的新武器。然而,这些特征在癌症中的特征和意义,特别是在透明细胞肾细胞癌(ccRCC)中,仍然难以捉摸。方法:从癌症基因组图谱中收集泛癌水平的表达、甲基化、突变、临床信息、拷贝数变异、功能含义和药物敏感性数据。采用无监督聚类算法对ccRCC异质性进行分析。免疫微环境的构建、免疫治疗反应、代谢模式和亚组之间的癌症进展特征也进行了研究。结果:与正常组织相比,铜原生体病相关基因在各种癌症组织中特异性下调,并与高甲基化和拷贝数变异相关。Cuprotosis评分在肿瘤组织中也出现了失调,我们发现这种信号可以正向调节氧化磷酸化和Myc,负向调节上皮间充质翻译和肌生成途径。ccRCC的CPCS1 (cuprotosis评分高)和CPCS2 (cuprotosis评分低)表现出不同的临床特征和生物学特征;CPCS2亚型临床分期较高,预后较差,可能正调控角化和表皮细胞分化,促进肿瘤进展。CPCS2也表现出较高的肿瘤突变负担和较低的肿瘤干性指数,同时导致较低的ICI治疗应答和功能失调的肿瘤免疫状态。CPCS2的基因组拷贝数(包括增臂和减臂)均高于CPCS1。基于亚组生物标志物构建的预后模型在训练组和验证组中都有令人满意的表现。此外,铜死亡激活因子DLAT的过表达在体外和体内均可抑制肾细胞系的恶性能力,包括细胞迁移和增殖。最后,cuprotosis在肿瘤中的激活可以通过ccRCC中的dsDNA-cGAS-STING信号传导增强抗肿瘤免疫。结论:cuprotosis的激活可能是治疗多种癌症的有效途径。cuprotosis相关信号可以通过cGAS-STING信号重塑ccRCC微环境下的肿瘤免疫,从而激活肿瘤抗原提呈过程。在ccRCC细胞系中上调DLAT的表达可以激活铜死亡模式,并被认为是ccRCC的合适靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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