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Analysis of Protein Phosphorylation and Its Functional Impact on Protein-Protein Interactions via Text Mining of the Scientific Literature

机译:通过科学文献的文本挖掘分析蛋白质的磷酸化及其对蛋白质与蛋白质相互作用的功能影响

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摘要

Post-translational modifications (PTMs) are one of the main contributors to the diversity of proteoforms in the proteomic landscape. In particular, protein phosphorylation represents an essential regulatory mechanism that plays a role in many biological processes. Protein kinases, the enzymes catalyzing this reaction, are key participants in metabolic and signaling pathways. Their activation or inactivation dictate downstream events: what substrates are modified and their subsequent impact (e.g., activation state, localization, protein-protein interactions (PPIs)). The biomedical literature continues to be the main source of evidence for experimental information about protein phosphorylation. Automatic methods to bring together phosphorylation events and phosphorylation-dependent PPIs can help to summarize the current knowledge and to expose hidden connections. In this chapter, we demonstrate two text mining tools, RLIMS-P and eFIP, for the retrieval and extraction of kinase-substrate-site data and phosphorylation-dependent PPIs from the literature. These tools offer several advantages over a literature search in PubMed as their results are specific for phosphorylation. RLIMS-P and eFIP results can be sorted, organized, and viewed in multiple ways to answer relevant biological questions, and the protein mentions are linked to UniProt identifiers.
机译:翻译后修饰(PTM)是蛋白质组学中蛋白质形式多样性的主要因素之一。特别地,蛋白质磷酸化代表在许多生物学过程中起作用的重要调节机制。蛋白激酶是催化该反应的酶,是代谢和信号通路的关键参与者。它们的激活或失活决定了下游事件:修饰哪些底物及其后续影响(例如,激活状态,定位,蛋白质-蛋白质相互作用(PPI))。生物医学文献仍然是蛋白质磷酸化实验信息的主要证据来源。将磷酸化事件和依赖于磷酸化的PPI结合在一起的自动方法可以帮助总结当前的知识并揭示隐藏的联系。在本章中,我们演示了两种文本挖掘工具RLIMS-P和eFIP,用于从文献中检索和提取激酶底物位点数据和磷酸化依赖性PPI。与PubMed中的文献搜索相比,这些工具具有多个优势,因为它们的结果特定于磷酸化。可以通过多种方式对RLIMS-P和eFIP结果进行分类,组织和查看,以回答相关的生物学问题,并且提及的蛋白质与UniProt标识符相关。

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