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Identification of Kinases and Interactors of p53 Using Kinase-Catalyzed Cross-Linking and Immunoprecipitation

机译:激酶催化的交联和免疫沉淀法鉴定p53的激酶和相互作用物

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Kinase enzymes phosphorylate protein substrates in a highly ordered manner to control cell signaling. Unregulated kinase activity is associated with a variety of disease states, most notably cancer, making the characterization of kinase activity in cells critical to understand disease formation. However, the paucity of available tools has prevented a full mapping of the substrates and interacting proteins of kinases involved in cellular function. Recently we developed kinase-catalyzed cross-linking to covalently connect substrate and kinase in a phosphorylation-dependent manner. Here, we report a new method combining kinase-catalyzed cross-linking and immunoprecipitation (K-CLIP) to identify kinase-substrate pairs and kinase-associated proteins. K-CLIP was applied to the substrate p53, which is robustly phosphorylated. Both known and unknown kinases of p53 were isolated from cell lysates using K-CLIP. In follow-up validation studies, MRCKbeta was identified as a new pS3 kinase. Beyond kinases, a variety of p53 and kinase-associated proteins were also identified using K-CLIP, which provided a snapshot of cellular interactions. The K-CLIP method represents an immediately useful chemical tool to identify kinase-substrate pairs and multiprotein complexes in cells, which will embolden cell signaling research and enhance our understanding of kinase activity in normal and disease states.
机译:激酶以高度有序的方式磷酸化蛋白质底物以控制细胞信号传导。失活的激酶活性与多种疾病状态相关,最显着的是癌症,这使得细胞中激酶活性的表征对于理解疾病形成至关重要。然而,可用工具的缺乏阻止了涉及细胞功能的激酶的底物和相互作用蛋白的完整图谱。最近,我们开发了激酶催化的交联,以磷酸化依赖性方式共价连接底物和激酶。在这里,我们报告结合激酶催化的交联和免疫沉淀(K-CLIP)的新方法,以识别激酶底物对和激酶相关蛋白。将K-CLIP施加到被牢固磷酸化的底物p53上。使用K-CLIP从细胞裂解物中分离出p53的已知和未知激酶。在后续的验证研究中,MRCKbeta被鉴定为一种新的pS3激酶。除激酶外,还使用K-CLIP鉴定了多种与p53和激酶相关的蛋白,这些蛋白提供了细胞相互作用的快照。 K-CLIP方法代表了一种立即有用的化学工具,可用于识别细胞中的激酶底物对和多蛋白复合物,这将加强细胞信号研究,并增强我们对正常和疾病状态下激酶活性的了解。

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