A Single-Step Protein Extraction for Lung Extracellular Matrix Proteomics Enabled by the Photocleavable Surfactant Azo and timsTOF Pro.

IF 6.1 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Anna G Towler, Andrew J Perciaccante, Timothy J Aballo, Yanlong Zhu, Fei Wang, Sarah Lloyd, Kuniko Kadoya, Yupeng He, Yu Tian, Ying Ge
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Abstract

The extracellular matrix (ECM) is a dynamic, complex network of proteins, collectively known as the 'matrisome', which not only provides essential structural support to cells and tissues but also regulates critical cellular processes. Dysregulation of the ECM is implicated in many diseases, underscoring the need to characterize the matrisome to better understand disease mechanisms. We have previously developed a dual-step protocol enabled by the photocleavable surfactant Azo for the extraction of ECM proteins from tissue using pH-neutral decellularization followed by solubilization by Azo. While effective for characterization of the ECM proteins, such a dual-step protocol requires two extracts per sample, limiting the throughput and complicating the comparison of protein quantitation across different extraction conditions. Here, we develop a single-step Azo-enabled protein extraction for the solubilization of ECM proteins from lung tissue to improve the throughput for studies with large sample sizes. Using this method, we identified 324 ECM proteins, including 137 core ECM and 187 ECM associated proteins. Core ECM proteins including elastin, fibronectin, and fibrillar collagens were reproducibly identified and quantified. We observed a 94.6% overlap in the ECM proteins identified between the single-step and dual-step Azo extracts, indicating the single-step Azo extraction achieves ECM protein coverage comparable to the dual-step extraction. Overall, we have demonstrated that this single-step Azo extraction is not only highly efficient but also comprehensive for ECM protein identification and quantification, making it a powerful method for ECM proteomics, especially for studies with large sample size.

光可切割表面活性剂Azo和timsTOF Pro的肺细胞外基质蛋白质组学单步蛋白提取。
细胞外基质(ECM)是一个动态的、复杂的蛋白质网络,统称为“基质体”,它不仅为细胞和组织提供必要的结构支持,而且还调节关键的细胞过程。ECM的失调与许多疾病有关,强调需要表征母体以更好地了解疾病机制。我们之前开发了一种双步骤方案,由光可切割表面活性剂Azo启用,用于从组织中提取ECM蛋白,使用ph中性脱细胞,然后用Azo溶解。虽然对ECM蛋白的表征是有效的,但这种双步方案需要每个样品两次提取,这限制了吞吐量,并使不同提取条件下蛋白质定量的比较复杂化。在这里,我们开发了一种单步偶氮激活蛋白提取方法,用于肺组织中ECM蛋白的增溶,以提高大样本量研究的通量。使用该方法,我们鉴定了324个ECM蛋白,其中包括137个核心ECM蛋白和187个ECM相关蛋白。核心ECM蛋白包括弹性蛋白、纤维连接蛋白和纤维状胶原蛋白,可重复鉴定和定量。我们观察到,单步和双步偶氮萃取之间鉴定的ECM蛋白有94.6%的重叠,这表明单步偶氮萃取达到了与双步萃取相当的ECM蛋白覆盖率。总的来说,我们已经证明了这种单步偶氮提取不仅效率高,而且对ECM蛋白质的鉴定和定量也很全面,使其成为ECM蛋白质组学的有力方法,特别是对于大样本量的研究。
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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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