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采用捕获化合物质谱法(CCMS)全面鉴定肝细胞系 HepG2 中的司他夫定结合激酶。

Comprehensive identification of staurosporine-binding kinases in the hepatocyte cell line HepG2 using Capture Compound Mass Spectrometry (CCMS).

机构信息

caprotec bioanalytics GmbH, Volmerstrasse 5, 12489 Berlin, Germany.

出版信息

J Proteome Res. 2010 Feb 5;9(2):806-17. doi: 10.1021/pr9007333.

Abstract

The central role of kinases in cell signaling has set them in the focus of biomedical research. In functional proteomics analyses, large- scale profiling of kinases has become feasible through the use of affinity pulldown beads that carry immobilized kinase inhibitors. As an alternative approach to solid phase beads, Capture Compound Mass Spectrometry (CCMS) enables the functional isolation of protein-classes on the basis of small molecule-protein interactions in solution. Capture Compounds are trifunctional probes: a selectivity function interacts with the native target proteins in equilibrium, upon irradiation a photoactivatable reactivity function forms an irreversible covalent bond to the target proteins, and a sorting function allows the captured proteins to be isolated from a complex protein mixture. We report the design and application of a novel, fully water-soluble Capture Compound that carries the broadband kinase inhibitor staurosporine as selectivity function. We used this Capture Compound to profile the kinome of the human liver-derived cell line HepG2 and identified one hundred kinases. HepG2 cells are a widely used model system for hepatocarcinoma, hepatitis, and for investigation of drug toxicity effects. CCMS experiments in membrane fractions of human placenta are given as example for the applicability to human tissue.

摘要

激酶在细胞信号转导中的核心作用使其成为生物医学研究的焦点。在功能蛋白质组学分析中,通过使用固定化激酶抑制剂的亲和下拉珠,大规模地对激酶进行分析已成为可能。作为固相珠的替代方法,捕获化合物质谱(CCMS)能够基于溶液中小分子-蛋白质相互作用,对蛋白质类进行功能分离。捕获化合物是三功能探针:选择性功能与天然靶蛋白在平衡时相互作用,照射后光活化反应性功能与靶蛋白形成不可逆的共价键,而分选功能允许从复杂的蛋白质混合物中分离出被捕获的蛋白质。我们报告了一种新型全水溶性捕获化合物的设计和应用,该化合物作为选择性功能携带广谱激酶抑制剂星形孢菌素。我们使用这种捕获化合物对人肝源性细胞系 HepG2 的激酶组进行了分析,鉴定了一百种激酶。HepG2 细胞是肝癌、肝炎和药物毒性作用研究的广泛应用模型系统。还给出了人胎盘膜部分的 CCMS 实验作为适用于人体组织的示例。

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