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Shining light on signaling and metabolic networks by genetically encoded biosensors

机译:基因编码生物传感器照亮信号和代谢网络

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Fluorescent labels have revolutionized cell biology. Signaling intermediates and metabolites can be measured in real time with subcellular spatial resolution. Most of these sensors are based on fluorescent proteins, and many report fluorescence resonance energy transfer. Because the biosensors are genetically encoded, a toolbox for addressing cell biological questions at the systems level is now available. Fluorescent biosensors are able to determine the localization of proteins and their dynamics, to reveal the cellular and subcellular localization of the respective interactions and activities, and to provide complementary data on the steady state levels of ions, metabolites, and signaling intermediates with high temporal and spatial resolution. They represent the basis for cell-based high-throughput assays that are necessary for a systems perspective on plant cell function.
机译:荧光标记彻底改变了细胞生物学。信号中间体和代谢产物可以亚细胞空间分辨率实时测量。这些传感器大多数基于荧光蛋白,许多报告了荧光共振能量转移。由于生物传感器是经过基因编码的,因此现在可以使用在系统级别解决细胞生物学问题的工具箱。荧光生物传感器能够确定蛋白质的定位及其动力学,揭示各自相互作用和活性的细胞和亚细胞定位,并提供有关离子,代谢物和信号中间体的稳态水平的补充数据,其中空间分辨率。它们代表了基于系统的植物细胞功能所必需的基于细胞的高通量分析的基础。

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