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Real-time measurement of endosomal acidification by a novel genetically encoded biosensor

机译:新型遗传编码生物传感器对内体酸化的实时测量

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摘要

Genetically encoded fluorescent proteins are optimal reporters when used to monitor cellular processes as they can be targeted to any subcellular region by fusion to a protein of interest. Here, we present the pH-sensitive fluorescent protein E1GFP which is ideally suited to monitor pH changes in dynamic intracellular structures in real time with high spatio temporal resolution. E1GFP is a ratiometric pH indicator by emission with a pK close to 6.0. We describe an application of this novel pH reporter in the measurement of pH changes along the endo-lysosomal pathway. By fusing E1GFP to the HIV-Tat protein which is endowed with cell-penetrating properties, we were able to monitor multi-step endocytosis from the initial cell-surface binding through to the intracellular endocytic network in real time. This represents a framework for the application of E1GFP to the in situ detection of pH changes involved in dynamic biological phenomena.
机译:当用于监视细胞过程时,遗传编码的荧光蛋白是最佳的报告基因,因为它们可以通过与目标蛋白融合而靶向任何亚细胞区域。在这里,我们介绍了对pH敏感的荧光蛋白E1 GFP,它非常适合以高时空分辨率实时监测动态细胞内结构的pH变化。 E1 GFP是发射的比例pH指示剂,pK值接近6.0。我们描述了这种新型pH报道分子在沿内溶酶体途径的pH值测量中的应用。通过将E1 GFP融合到具有细胞穿透特性的HIV-Tat蛋白中,我们能够实时监测从初始细胞表面结合到细胞内内吞网络的多步内吞作用。这代表了将E1 GFP用于动态生物学现象涉及的pH值原位检测的框架。

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