多组学分析表明,在早期子宫内膜癌中,具有新型致癌基因簇 TRAP1low/CAMSAP3low 的细胞更具侵袭性,预后更差。

IF 27.7 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Cancer Pub Date : 2024-06-17 DOI:10.1186/s12943-024-02039-2
Xiaodan Mao, Xiaoyue Tang, Jingxuan Ye, Shuxia Xu, Yue Wang, Xianhua Liu, Qibin Wu, Xite Lin, Maotong Zhang, Jiangfeng Liu, Juntao Yang, Pengming Sun
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Interestingly, tumor necrosis factor type-1 receptor-associated protein (TRAP1) and calmodulin-regulated spectrin-associated protein family member 3 (CAMSAP3) were found to be significantly downregulated in the specific cell cluster. Expectedly, the signature genes of TRAP1<sup>low</sup>/CAMSAP3<sup>low</sup> cluster included classical oncogenes. Moreover, close cellular interactions were observed between myeloid cells and the TRAP1<sup>low</sup>/CAMSAP3<sup>low</sup> cluster after systematically elucidating their relationship with tumor microenvironment (TME). The expression of TRAP1 and CAMSAP3 was verified by immunohistochemistry. Thus, a novel prediction model combining TRAP1, CAMSAP3 and TP53 was construct by multi-omics. Compared with the area under the curve, it demonstrated a significantly improvemrnt in the diagnostic efficacy in EC patients from TCGA bank. 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引用次数: 0

摘要

早期子宫内膜癌(EC)的临床异质性值得进一步研究,以确定高质量的预后标志物及其在侵袭性肿瘤行为中的潜在作用。TP53突变被认为是子宫内膜癌改良分子分型中重要的主要分型指标,但它仍不能准确预测子宫内膜癌的预后。对24例早期子宫内膜异位症患者的癌组织和癌旁组织进行蛋白质组学分析后,筛选出13种不同表达的蛋白质,并通过单细胞转录组(scRNA-seq)进一步鉴定出2种富含p53信号通路的蛋白质。有趣的是,在特定细胞群中,肿瘤坏死因子1型受体相关蛋白(TRAP1)和钙调素调控谱蛋白相关蛋白家族成员3(CAMSAP3)被显著下调。TRAP1-low/CAMSAP3-low细胞簇的特征基因包括经典的癌基因,这在意料之中。此外,在系统阐明髓系细胞与肿瘤微环境(TME)的关系后,发现髓系细胞与TRAP1low/CAMSAP3low细胞群之间存在密切的细胞相互作用。TRAP1和CAMSAP3的表达通过免疫组化得到了验证。因此,多组学构建了一个结合TRAP1、CAMSAP3和TP53的新型预测模型。与曲线下面积相比,该模型明显提高了对 TCGA 库中 EC 患者的诊断效率。总之,这项研究通过蛋白质组学和 scRNA-seq,提高了人们对早期心肌梗死预后的认识。这些发现可能会改善早期EC患者的精确风险分层。
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Multi-omics profiling reveal cells with novel oncogenic cluster, TRAP1low/CAMSAP3low, emerge more aggressive behavior and poor-prognosis in early-stage endometrial cancer.

The clinical heterogeneity of early-stage endometrial cancer (EC) is worthy of further study to identify high-quality prognostic markers and their potential role in aggressive tumor behavior. Mutation of TP53 was considered as an important primary triage in modified molecular typing for EC, it still cannot precisely predict the prognosis of EC. After proteomic analysis of cancer and para-cancerous tissues from 24 early-stage endometrioid EC patients with different survival outcomes, 13 differentially expressed proteins were screen out while 2 proteins enriched in p53 signaling pathway were further identified by single-cell transcriptome (scRNA-seq). Interestingly, tumor necrosis factor type-1 receptor-associated protein (TRAP1) and calmodulin-regulated spectrin-associated protein family member 3 (CAMSAP3) were found to be significantly downregulated in the specific cell cluster. Expectedly, the signature genes of TRAP1low/CAMSAP3low cluster included classical oncogenes. Moreover, close cellular interactions were observed between myeloid cells and the TRAP1low/CAMSAP3low cluster after systematically elucidating their relationship with tumor microenvironment (TME). The expression of TRAP1 and CAMSAP3 was verified by immunohistochemistry. Thus, a novel prediction model combining TRAP1, CAMSAP3 and TP53 was construct by multi-omics. Compared with the area under the curve, it demonstrated a significantly improvemrnt in the diagnostic efficacy in EC patients from TCGA bank. In conclusion, this work improved the current knowledge regarding the prognosis of early-stage EC through proteomics and scRNA-seq. These findings may lead to improvements in precise risk stratification of early-stage EC patients.

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来源期刊
Molecular Cancer
Molecular Cancer 医学-生化与分子生物学
CiteScore
54.90
自引率
2.70%
发文量
224
审稿时长
2 months
期刊介绍: Molecular Cancer is a platform that encourages the exchange of ideas and discoveries in the field of cancer research, particularly focusing on the molecular aspects. Our goal is to facilitate discussions and provide insights into various areas of cancer and related biomedical science. We welcome articles from basic, translational, and clinical research that contribute to the advancement of understanding, prevention, diagnosis, and treatment of cancer. The scope of topics covered in Molecular Cancer is diverse and inclusive. These include, but are not limited to, cell and tumor biology, angiogenesis, utilizing animal models, understanding metastasis, exploring cancer antigens and the immune response, investigating cellular signaling and molecular biology, examining epidemiology, genetic and molecular profiling of cancer, identifying molecular targets, studying cancer stem cells, exploring DNA damage and repair mechanisms, analyzing cell cycle regulation, investigating apoptosis, exploring molecular virology, and evaluating vaccine and antibody-based cancer therapies. Molecular Cancer serves as an important platform for sharing exciting discoveries in cancer-related research. It offers an unparalleled opportunity to communicate information to both specialists and the general public. The online presence of Molecular Cancer enables immediate publication of accepted articles and facilitates the presentation of large datasets and supplementary information. This ensures that new research is efficiently and rapidly disseminated to the scientific community.
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