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整合与定量蛋白质组学方法绘制时间和内源性蛋白质复合物图谱。

Integrated and Quantitative Proteomic Approach for Charting Temporal and Endogenous Protein Complexes.

机构信息

Shenzhen People's Hospital , The Second Clinical Medical College of Jinan University , Shenzhen 518020 , China.

Guangdong Provincial Key Laboratory of Cell Microenvironment and Disease Research , Shenzhen 518055 , China.

出版信息

Anal Chem. 2018 Nov 6;90(21):12574-12583. doi: 10.1021/acs.analchem.8b02667. Epub 2018 Oct 17.

Abstract

Proteins often assemble into multiprotein complexes for carrying out their biological functions. Affinity purification combined with mass spectrometry (AP-MS) is a method of choice for unbiasedly charting protein complexes. Typically, genetically tagged bait protein and associated proteins are immunoprecipitated from cell lysate and subjected to in-gel or on-bead digestion for MS analysis. However, the sample preparation procedures are often time-consuming and skipping reduction and alkylation steps results in incomplete digestion. Here, by seamlessly combining AP with the simple and integrated spintip-based proteomics technology (SISPROT), we developed an integrated AP-MS workflow for simultaneously processing more than 10 AP samples from cells cultured in six-well plates in 2 h. Moreover, we developed a quantitation-based data analysis workflow for differentiating potential interacting proteins from nonspecific interferences. The AP-SISPROT ensures high digestion efficiency especially for large transmembrane proteins such as EGFR and high quantification precision for profiling temporal interaction network of key EGFR signaling protein GRB2 across four time points of EGF treatment. More importantly, the integration feature allows minimum sample lose and helps the development of an ideal AP-MS workflow for studying endogenous protein complexes by the CRISPR Cas9 technology for the first time. By generating endogenously expressed bait protein fused with affinity tag, protein complexes associated with endogenous Integrin-linked kinase (ILK) was identified with much higher selectivity as compared with overexpressed and tagged ILK. The AP-SISPROT technology and its combination with CRISPR Cas9 technology should be generally applicable for studying protein complexes in a more efficient and physiologically relevant manner.

摘要

蛋白质通常组装成多蛋白复合物来执行其生物功能。亲和纯化结合质谱(AP-MS)是一种用于绘制蛋白质复合物的无偏方法。通常,通过遗传标记的诱饵蛋白和相关蛋白从细胞裂解物中免疫沉淀,并进行胶内或珠上消化用于 MS 分析。然而,样品制备过程通常很耗时,跳过还原和烷基化步骤会导致不完全消化。在这里,我们通过无缝结合 AP 和简单集成的基于自旋尖端的蛋白质组学技术(SISPROT),开发了一种集成的 AP-MS 工作流程,可在 2 小时内同时处理来自六孔板培养的超过 10 个 AP 样本。此外,我们开发了一种基于定量的数据分析工作流程,用于区分潜在的相互作用蛋白和非特异性干扰。AP-SISPROT 确保了高消化效率,特别是对于大的跨膜蛋白,如 EGFR,并且对于在 EGF 处理的四个时间点上 GRB2 等关键 EGFR 信号蛋白的时相相互作用网络进行定量分析具有高精度。更重要的是,集成功能可最大限度地减少样品损失,并有助于首次通过 CRISPR Cas9 技术开发用于研究内源性蛋白质复合物的理想 AP-MS 工作流程。通过生成与亲和标签融合的内源性诱饵蛋白,与内源性整合素连接激酶(ILK)相关的蛋白质复合物的鉴定具有更高的选择性,与过表达和标记的 ILK 相比。AP-SISPROT 技术及其与 CRISPR Cas9 技术的结合,应该能够更有效地以更生理相关的方式研究蛋白质复合物。

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