1)中国科学院生物物理研究所生物大分子全国重点实验室,北京 100101;2.3)中国科学院大学生命科学学院,北京 100049;3.2)中国医学科学院肿瘤医院肝胆外科,北京 100021
国家重点研发计划(2022YFA1603702)和国家自然科学基金(92254304)资助项目。
1)State Key Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China;2.3)College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China;3.2)Department of Hepatobiliary Surgery, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100021, China
This work was supported by grants from the National Key R&D Program of China (2022YFA1603702) and The National Natural Science Foundation of China (92254304).
目的 肝细胞癌占原发性肝癌90%以上,外科手术是治疗肝细胞癌的主要治疗方法。近年来,免疫治疗(包括免疫检查点抑制剂和过继性细胞治疗)的突破为不可手术的肝细胞癌患者提供了替代治疗方案,但肝细胞癌患者的复杂遗传异质性和代谢异质性制约了治疗效果。本研究旨在探究沉默信息调节因子5(silence information regulator 5,SIRT5)介导的赖氨酸去酰基化修饰在肝细胞癌代谢重编程中的调控作用,并明确其通过去酰基化激活谷胱甘肽硫转移酶M1(glutathione S-transferase Mu 1,GSTM1)解毒功能,从而促进肝细胞癌发生的关键分子机制。方法 通过蛋白质印迹法分析了肝细胞癌临床标本中的蛋白质赖氨酸酰基化水平及SIRT5表达水平,通过基于CRISPR-Cas9的基因编辑技术构建了在肝组织中特异性过表达SIRT5的转基因小鼠,并以此建立原发肝癌模型,以分析肝组织SIRT5在原发性肝癌发生发展中的作用。结果 SIRT5在肝细胞癌临床标本中表达水平升高,其表达水平与蛋白质赖氨酸酰基化水平降低相关。蛋白组学分析及生物信息学分析表明,肝细胞癌组织中与代谢、生物合成、解毒及氧化还原稳态相关蛋白质的酰基化修饰(包括丙二酰化修饰、琥珀酰化修饰)发生改变,进一步通过蛋白质修饰分析及酶活性分析证明GSTM1的活性受丙二酰化修饰影响。在肝组织中特异性过表达SIRT5加速二乙基亚硝胺引发的肝组织纤维化,促进肝细胞癌的发生和发展。结论 SIRT5通过擦除GSTM1等关键酶的酰基化修饰而影响肝细胞代谢及氧化还原稳态,从而促进肝细胞癌的发生发展。干预蛋白质酰基化修饰可能为肝细胞癌的免疫治疗带来新的机遇。
Objective Hepatocellular carcinoma (HCC) represents 90% of all primary liver cancers. The main risk factors associated with HCC include viral hepatitis (B and/or C), alcohol abuse, and metabolic dysfunction-associated steatotic liver disease (MASLD), which progressively advance to liver fibrosis, cirrhosis, and ultimately evolve into HCC. Surgical resection represents the most effective treatment for HCC, while recent advances in immunotherapy, including immune checkpoint inhibitors and adoptive cell therapies, have provided improved treatment prospects for patients with unresectable HCC. However, the complex metabolic heterogeneity of HCC limits the therapeutic efficacy. Metabolic intermediates acyl-CoA not only provide energy and substrates for numerous biochemical reactions but also serve as donors for protein lysine acylation, a major class of post-translational modification (PTM). Therefore, a deeper understanding of the molecular mechanisms underlying protein lysine acylation and hepatocarcinogenesis is urgently needed.Methods The levels of protein lysine acylation and silence information regulator 5 (SIRT5) expression levels in clinical HCC samples were analyzed by Western blot. Quantitative malonylome and succinylome of HCC samples were analyzed by antibody-based affinity enrichment coupled with tandem mass spectrometry. The proliferation of HCC cells was analyzed with Cell Counting Kit-8 (CCK-8) assays, the apoptosis was quantified by Annexin V-FITC/propidium iodide (PI) staining coupled with flow cytometry, and the ability of cells to migrate was assayed by Transwell assays. The enzymatic activity of glutathione S-transferase Mu 1 (GSTM1) was quantified. Transgenic mice with hepatic overexpression of SIRT5 were constructed using CRISPR-Cas9, and primary hepatocarcinogenesis was induced by administration of diethylnitrosamine.Results Western blot analysis indicated that the expression level of SIRT5 was elevated in clinical samples from HCC patients, and the levels of lysine malonylation, glutarylation, and succinylation were significantly reduced in HCC tissues. Knockout of SIRT5 in MHCC-97H and MHCC-97L hepatoma cells suppressed cell proliferation, and increased the percentage of apoptotic cells significantly. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses of the differentially malonylome and succinylome of HCC samples revealed significant enrichment in two major classes of biological processes: core energy metabolism (e.g., glycolysis/gluconeogenesis, tricarboxylic acid metabolic process, fatty acid beta oxidation) and detoxification and oxidative stress response (e.g., response to toxic substance, chemical carcinogenesis, reactive oxygen species (ROS)). SIRT5 removes malonylation from lysine residues in GSTM1 and restores its detoxification activity, which is crucial for the survival of hepatocytes under stressed conditions. More importantly, in vivo experiment indicated that hepatic-specific overexpression of SIRT5 in mice accelerated diethylnitrosamine-induced liver fibrosis and hepatocarcinogenesis, indicating the critical role of SIRT5 in HCC progression.Conclusion This study highlights the previously unrecognized SIRT5-GSTM1 axis as a key regulator in hepatocarcinogenesis, and suggests a potential target for the treatment of patients with HCC.
张瑀,任凤蕊,李佳运,陈翔宇,王子奕,孙琪,赵军程,张叶,黄振,胡昊,卫涛涛,肖敏.沉默信息调节因子5调控蛋白质酰基化修饰并促进小鼠肝细胞癌发生发展[J].生物化学与生物物理进展,2026,53(6):1712-1722 ZHANG Yu, REN Feng-Rui, LI Jia-Yun, CHEN Xiang-Yu, WANG Zi-Yi, SUN Qi, ZHAO Jun-Cheng, ZHANG Ye, HUANG Zhen, HU Hao, WEI Tao-Tao, XIAO Min. SIRT5 Potentiates Hepatocarcinogenesis by Modulating Protein Acylation in Mice[J]. Progress in Biochemistry and Biophysics,2026,53(6):1712-1722
复制

扫码关注 生物化学与生物物理进展 ® 2026 网站版权 ICP:京ICP备05023138号-1 京公网安备 11010502031771号
