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利用酵母中基因编码的双功能生物传感器 pHaROS 对细胞 pH 和氧化还原稳态进行动态成像。

Dynamic imaging of cellular pH and redox homeostasis with a genetically encoded dual-functional biosensor, pHaROS, in yeast.

机构信息

Department of Biology, Institute of Plant Stress Biology, State Key Laboratory of Cotton Biology, Henan University, Kaifeng, China 475001.

Department of Biology, Institute of Plant Stress Biology, State Key Laboratory of Cotton Biology, Henan University, Kaifeng, China 475001

出版信息

J Biol Chem. 2019 Oct 25;294(43):15768-15780. doi: 10.1074/jbc.RA119.007557. Epub 2019 Sep 5.

Abstract

Intracellular pH and redox states are critical for multiple processes and partly determine cell behavior. Here, we developed a genetically encoded dual-function probe, named nd edx-ensitive fluorescent protein (pHaROS), for simultaneous real-time detection of changes in redox potential and pH in living cells. pHaROS consists of the flavin mononucleotide-binding fluorescent protein iLOV and an mKATE variant, mBeRFP. Using pHaROS in cells, we confirmed that HO raises the overall redox potential of the cell and found that this increase is accompanied by a decrease in cytosolic pH. Furthermore, we observed spatiotemporal pH and redox homeostasis within the nucleus at various stages of the cell cycle in budding yeast () during cellular development and responses to oxidative stress. Importantly, we could tailor pHaROS to specific applications, including measurements in different organelles and cell types and the GSH/GSSG ratio, highlighting pHaROS's high flexibility and versatility. In summary, we have developed pHaROS as a dual-function probe that can be used for simultaneously measuring cellular pH and redox potential, representing a very promising tool for determining the cross-talk between intracellular redox- and pH-signaling processes in yeast and mammalian U87 cell.

摘要

细胞内的 pH 值和氧化还原状态对于多种过程至关重要,部分决定了细胞的行为。在这里,我们开发了一种遗传编码的双功能探针,命名为 nd edx-ensitive 荧光蛋白(pHaROS),用于实时同时检测活细胞中氧化还原电位和 pH 值的变化。pHaROS 由黄素单核苷酸结合荧光蛋白 iLOV 和 mKATE 变体 mBeRFP 组成。在细胞中使用 pHaROS,我们证实 HO 会提高细胞的整体氧化还原电位,并且发现这种增加伴随着细胞质 pH 值的降低。此外,我们观察到在芽殖酵母()细胞周期的不同阶段以及细胞发育和对氧化应激的反应过程中,细胞核内的 pH 和氧化还原稳态具有时空特异性。重要的是,我们可以根据特定的应用对 pHaROS 进行定制,包括在不同细胞器和细胞类型中的测量以及 GSH/GSSG 比,突出了 pHaROS 的高灵活性和多功能性。总之,我们已经开发出 pHaROS 作为一种双功能探针,可用于同时测量细胞内的 pH 值和氧化还原电位,代表了一种非常有前途的工具,可用于确定酵母和哺乳动物 U87 细胞内细胞内氧化还原和 pH 信号转导之间的串扰。

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