Proteome, Lysine Acetylome, and Succinylome Identify Posttranslational Modification of STAT1 as a Novel Drug Target in Silicosis.

IF 6.1 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Molecular & Cellular Proteomics Pub Date : 2024-06-01 Epub Date: 2024-04-17 DOI:10.1016/j.mcpro.2024.100770
Tiantian Zhang, Yiyang Wang, Youliang Sun, Meiyue Song, Junling Pang, Mingyao Wang, Zhe Zhang, Peiran Yang, Yiling Chen, Xianmei Qi, Huan Zhou, Zhenzong Han, Yanjiang Xing, Ying Liu, Baicun Li, Jiangfeng Liu, Juntao Yang, Jing Wang
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Abstract

Inhalation of crystalline silica dust induces incurable lung damage, silicosis, and pulmonary fibrosis. However, the mechanisms of the lung injury remain poorly understood, with limited therapeutic options aside from lung transplantation. Posttranslational modifications can regulate the function of proteins and play an important role in studying disease mechanisms. To investigate changes in posttranslational modifications of proteins in silicosis, combined quantitative proteome, acetylome, and succinylome analyses were performed with lung tissues from silica-injured and healthy mice using liquid chromatography-mass spectrometry. Combined analysis was applied to the three omics datasets to construct a protein landscape. The acetylation and succinylation of the key transcription factor STAT1 were found to play important roles in the silica-induced pathophysiological changes. Modulating the acetylation level of STAT1 with geranylgeranylacetone effectively inhibited the progression of silicosis. This report revealed a comprehensive landscape of posttranslational modifications in silica-injured mouse and presented a novel therapeutic strategy targeting the posttranslational level for silica-induced lung diseases.

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蛋白质组、赖氨酸乙酰基组和琥珀酰基组将 STAT1 的翻译后修饰确定为矽肺病的新型药物靶点。
吸入结晶二氧化硅粉尘会诱发不可治愈的肺损伤、矽肺和肺纤维化。然而,人们对肺损伤的机制仍然知之甚少,除了肺移植外,治疗方法也很有限。翻译后修饰可以调节蛋白质的功能,在研究疾病机理方面发挥着重要作用。为了研究矽肺病蛋白质翻译后修饰的变化,研究人员利用液相色谱-质谱联用技术对矽肺损伤小鼠和健康小鼠的肺组织进行了蛋白质组、乙酰组和琥珀酰组的定量分析。对这三个全息数据集进行了综合分析,以构建蛋白质图谱。研究发现,关键转录因子STAT1的乙酰化和琥珀酰化在二氧化硅诱导的病理生理变化中发挥了重要作用。用香叶基丙酮(GGA)调节STAT1的乙酰化水平可有效抑制矽肺的发展。该报告揭示了矽损伤小鼠体内翻译后修饰的全面情况,提出了针对矽诱导的肺部疾病的翻译后水平的新型治疗策略。
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
Molecular & Cellular Proteomics
Molecular & Cellular Proteomics 生物-生化研究方法
CiteScore
11.50
自引率
4.30%
发文量
131
审稿时长
84 days
期刊介绍: The mission of MCP is to foster the development and applications of proteomics in both basic and translational research. MCP will publish manuscripts that report significant new biological or clinical discoveries underpinned by proteomic observations across all kingdoms of life. Manuscripts must define the biological roles played by the proteins investigated or their mechanisms of action. The journal also emphasizes articles that describe innovative new computational methods and technological advancements that will enable future discoveries. Manuscripts describing such approaches do not have to include a solution to a biological problem, but must demonstrate that the technology works as described, is reproducible and is appropriate to uncover yet unknown protein/proteome function or properties using relevant model systems or publicly available data. Scope: -Fundamental studies in biology, including integrative "omics" studies, that provide mechanistic insights -Novel experimental and computational technologies -Proteogenomic data integration and analysis that enable greater understanding of physiology and disease processes -Pathway and network analyses of signaling that focus on the roles of post-translational modifications -Studies of proteome dynamics and quality controls, and their roles in disease -Studies of evolutionary processes effecting proteome dynamics, quality and regulation -Chemical proteomics, including mechanisms of drug action -Proteomics of the immune system and antigen presentation/recognition -Microbiome proteomics, host-microbe and host-pathogen interactions, and their roles in health and disease -Clinical and translational studies of human diseases -Metabolomics to understand functional connections between genes, proteins and phenotypes
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