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一种基于HaloTag的多色荧光传感器,利用溶剂变色和基于分子转子的荧光团对活细胞中的蛋白质组应激进行可视化和定量分析。

A HaloTag-Based Multicolor Fluorogenic Sensor Visualizes and Quantifies Proteome Stress in Live Cells Using Solvatochromic and Molecular Rotor-Based Fluorophores.

作者信息

Liu Yu, Miao Kun, Li Yinghao, Fares Matthew, Chen Shuyuan, Zhang Xin

出版信息

Biochemistry. 2018 Aug 7;57(31):4663-4674. doi: 10.1021/acs.biochem.8b00135. Epub 2018 Feb 28.

DOI:10.1021/acs.biochem.8b00135
PMID:29474059
Abstract

Protein homeostasis, or proteostasis, is essential for cellular fitness and viability. Many environmental factors compromise proteostasis, induce global proteome stress, and cause diseases. The proteome stress sensor is a powerful tool for dissecting the mechanism of cellular stress and finding therapeutics that ameliorate these diseases. In this work, we present a multicolor HaloTag-based sensor (named AgHalo) to visualize and quantify proteome stresses in live cells. The current AgHalo sensor is equipped with three fluorogenic probes that turn on fluorescence when the sensor forms either soluble oligomers or insoluble aggregates upon exposure to stress conditions, both in vitro and in cellulo. In addition, AgHalo probes can be combined with commercially available always-fluorescent HaloTag ligands to enable two-color imaging, allowing for direct visualization of the AgHalo sensor both before and after cells are subjected to stress conditions. Finally, pulse-chase experiments can be performed to discern changes in the cellular proteome in live cells by first forming the AgHalo conjugate and then either applying or removing stress at any desired time point. In summary, the AgHalo sensor can be used to visualize and quantify proteome stress in live cells, a task that is difficult to accomplish using previous always-fluorescent methods. This sensor should be suited to evaluating cellular proteostasis under various exogenous stresses, including chemical toxins, drugs, and environmental factors.

摘要

蛋白质稳态,即蛋白质动态平衡,对于细胞的健康和活力至关重要。许多环境因素会破坏蛋白质动态平衡,引发整体蛋白质组应激,并导致疾病。蛋白质组应激传感器是剖析细胞应激机制以及寻找可改善这些疾病的治疗方法的有力工具。在这项工作中,我们展示了一种基于多色卤代标签的传感器(名为AgHalo),用于在活细胞中可视化和量化蛋白质组应激。当前的AgHalo传感器配备了三种荧光探针,当传感器在体外和细胞内暴露于应激条件下形成可溶性寡聚体或不溶性聚集体时,这些探针会开启荧光。此外,AgHalo探针可以与市售的始终发荧光的卤代标签配体结合,实现双色成像,从而在细胞受到应激条件前后直接可视化AgHalo传感器。最后,可以进行脉冲追踪实验,通过首先形成AgHalo共轭物,然后在任何所需时间点施加或去除应激,来辨别活细胞中细胞蛋白质组的变化。总之,AgHalo传感器可用于在活细胞中可视化和量化蛋白质组应激,这是使用以前的始终发荧光方法难以完成的任务。该传感器应适用于评估在各种外源性应激(包括化学毒素、药物和环境因素)下的细胞蛋白质动态平衡。

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A HaloTag-Based Multicolor Fluorogenic Sensor Visualizes and Quantifies Proteome Stress in Live Cells Using Solvatochromic and Molecular Rotor-Based Fluorophores.一种基于HaloTag的多色荧光传感器,利用溶剂变色和基于分子转子的荧光团对活细胞中的蛋白质组应激进行可视化和定量分析。
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