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Quantitative Real-Time Imaging of Glutathione with Subcellular Resolution

机译:亚细胞分辨率的谷胱甘肽的定量实时成像

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Aims: Quantitative imaging of glutathione (GSH) with high spatial and temporal resolution is essential for studying the roles of GSH in redox biology. To study the long-standing question of compartmentalization of GSH, especially its distribution between the nucleus and cytosol, an organelle-targeted quantitative probe is needed. Results: We developed a reversible reaction-based ratiometric fluorescent probe-HaloRT-that can quantitatively measure GSH dynamics with subcellular resolution in real time. Using HaloRT, we quantitatively measured the GSH concentrations in the nucleus and cytosol of HeLa cells and primary hepatocytes under different treatment conditions and found no appreciable concentration gradients between these two organelles. Innovation and Conclusion: We developed the first reversible ratiometric GSH probe that can be universally targeted to any organelle of interest. Taking advantage of this new tool, we provided definitive evidence showing that GSH concentrations are not significantly different between the nucleus and cytosol, challenging the view of nuclear compartmentalization of GSH.
机译:目的:具有高空间和时间分辨率的谷胱甘肽(GSH)的定量成像对于研究GSH在氧化还原生物学中的作用至关重要。为了研究GSH的间隔化的长期存在的问题,特别是其核和细胞溶溶胶之间的分布,需要一个细胞器靶向的定量探针。结果:我们开发了一种基于可逆反应的比率荧光探针 - 箭头 - 可以实时定量测量具有亚细胞分辨率的GSH动态。使用敲击率,我们在不同的处理条件下定量测量HeLa细胞和初级肝细胞的细胞核和细胞溶胶中的GSH浓度,并在这两个细胞器之间发现了没有可明显的浓度梯度。创新与结论:我们开发了第一款可逆比率GSH探针,可以普遍瞄准任何感兴趣的细胞器。利用这种新工具,我们提供了明确的证据表明,核和细胞溶胶之间的GSH浓度没有显着差异,挑战GSH的核隔离观点。

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