Multi-Omics Insights into Disulfidptosis-Related Genes Reveal RPN1 as a Therapeutic Target for Liver Cancer

Author:

He Yan1,Hu Yue2,Cheng Yunsheng3,Li Xutong4,Chen Chuanhong1,Zhang Shijie5,He Huihu5,Cao Feng16ORCID

Affiliation:

1. Vascular Surgery, Department of General Surgery, The First Hospital of Anhui Medical University, Hefei 230001, China

2. Pathology Department, Hefei Cancer Hospital, Chinese Academy of Sciences (CAS), Hefei 230000, China

3. Department of General Surgery, The Second Affiliated Hospital of Anhui Medical University, Hefei 230000, China

4. Department of Infectious Diseases, The First Hospital of Anhui Medical University, Hefei 230001, China

5. Department of General Surgery, The Fuyang Hospital of Anhui Medical University, Fuyang 236000, China

6. Medical Faculty, University Hospital RWTH Aachen, 52074 Aachen, Germany

Abstract

Disulfidptosis, a newly identified mode of programmed cell death, is yet to be comprehensively elucidated with respect to its multi-omics characteristics in tumors, specific pathogenic mechanisms, and antitumor functions in liver cancer. This study included 10,327 tumor and normal tissue samples from 33 cancer types. In-depth analyses using various bioinformatics tools revealed widespread dysregulation of disulfidptosis-related genes (DRGs) in pan-cancer and significant associations with prognosis, genetic variations, tumor stemness, methylation levels, and drug sensitivity. Univariate and multivariate Cox regression and LASSO regression were used to screen and construct prognosis-related hub DRGs and predictive models in the context of liver cancer. Subsequently, single cell analysis was conducted to investigate the subcellular localization of RPN1, a hub DRG, in various solid tumors. Western blotting was performed to validate the expression of RPN1 at both cellular and tissue levels. Additionally, functional experiments, including CCK8, EdU, clone, and transwell assays, indicated that RPN1 knockdown promoted the proliferative and invasive capacities of liver cancer cells. Therefore, this study elucidated the multi-omics characteristics of DRGs in pan-cancer and established a prognostic model for liver cancer. Additionally, this study revealed the molecular functions of RPN1 in liver cancer, suggesting its potential as a therapeutic target for this disease.

Funder

The Research Projects of Anhui Medical University

Anhui Provincial Natural Science Research Fund for Universities

Publisher

MDPI AG

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