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Phosphoproteomic approaches to elucidate cellular signaling networks

机译:磷酸化蛋白质组学方法阐明细胞信号网络

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摘要

Protein phosphorylation is crucial in the regulation of signaling pathways that control various biological responses. Recent progress in diverse methodologies to investigate protein phosphorylation in complex biological samples has resulted in more rapid, detailed and quantitative analyses of signaling networks. In particular, advances in mass spectrometry (MS) have enabled the identification and quantification of thousands of both known and novel phosphorylation sites. Initial MS-based information can be complemented with a variety of recently developed and improved phosphoproteomic techniques. These include multiplexed microbead or kinase activity assays, flow cytometry based single-cell analysis, protein microarrays and interaction studies. The combination of multiple approaches, coupled with phenotypic response measurements, computational modeling and biochemical manipulations, will ultimately reveal the mechanistic regulation of signaling networks.
机译:蛋白磷酸化在控制各种生物学反应的信号传导途径的调控中至关重要。研究复杂生物样品中蛋白质磷酸化的各种方法的最新进展已导致信号网络的分析更加快速,详细和定量。特别是,质谱(MS)的进步已使数千种已知和新型磷酸化位点得以鉴定和定量。最初的基于MS的信息可以用各种最近开发和改进的磷酸蛋白质组学技术进行补充。这些包括多重微珠或激酶活性测定,基于流式细胞仪的单细胞分析,蛋白质微阵列和相互作用研究。多种方法的结合,再加上表型反应的测量,计算模型和生化处理,最终将揭示信号网络的机械调节。

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