三磷酸腺苷
化学
细胞外
磷酸化
生物物理学
细胞信号
信号转导
腺苷
刺激
底物水平磷酸化
细胞内
脱氧核酶
ATP合酶
生物化学
细胞生物学
酶
神经科学
DNA
生物
作者
Dan Zhao,Dingran Chang,Qiang Zhang,Yangyang Chang,Bo Liu,Changsen Sun,Zhonping Li,Chuan Dong,Meng Liu,Yingfu Li
摘要
Adenosine 5'-triphosphate (ATP) is a central extracellular signaling agent involved in various physiological and pathological processes. However, precise measurements of the temporal and spatial components of ATP dynamics are lacking due primarily to the limitations of available methods for ATP detection. Here, we report on the first effort to design a self-phosphorylating DNAzyme (SPDz) sensor for fluorescence imaging of ATP. In response to ATP, SPDz sensors exhibit subsecond response kinetics, extremely high specificity, and micromolar affinities. In particular, we demonstrate cell-surface-anchored SPDz sensors for fluorescence imaging of both stress-induced endogenous ATP release in astrocytes and mechanical stimulation-evoked ATP release at the single-cell level. We also validated their utility for visualizing the rapid dynamic properties of ATP signaling upon electrical stimulation in astrocytes. Thus, SPDz sensors are robust tools for monitoring ATP signaling underlying diverse cellular processes.
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