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Real-time in vivo imaging of extracellular ATP in the brain with a hybrid-type fluorescent sensor

机译:用杂交型荧光传感器的大脑细胞外ATP的实时成像

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摘要

Adenosine 5’ triphosphate (ATP) is a ubiquitous extracellular signaling messenger. Here, we describe a method for in-vivo imaging of extracellular ATP with high spatiotemporal resolution. We prepared a comprehensive set of cysteine-substitution mutants of ATP-binding protein, Bacillus FoF1-ATP synthase ε subunit, labeled with small-molecule fluorophores at the introduced cysteine residue. Screening revealed that the Cy3-labeled glutamine-105 mutant (Q105C-Cy3; designated ATPOS) shows a large fluorescence change in the presence of ATP, with submicromolar affinity, pH-independence, and high selectivity for ATP over ATP metabolites and other nucleotides. To enable in-vivo validation, we introduced BoNT/C-Hc for binding to neuronal plasma membrane and Alexa Fluor 488 for ratiometric measurement. The resulting ATPOS complex binds to neurons in cerebral cortex of living mice, and clearly visualized a concentrically propagating wave of extracellular ATP release in response to electrical stimulation. ATPOS should be useful to probe the extracellular ATP dynamics of diverse biological processes in vivo.
机译:腺苷5'三磷酸(ATP)是一种普遍存在的细胞外信号通信者。在此,我们描述了具有高时的术的细胞外ATP体内成像的方法。我们制备了一套综合的ATP结合蛋白,Bacillus Fof1-ATP合酶ε亚基的半胱氨酸替代突变体,用在引入的半胱氨酸残基的小分子荧光团标记。筛选显示Cy3标记的谷氨酰胺-105突变体(Q105C-CY3;指定的ATPOS)显示ATP存在的大荧光变化,具有亚微粒剂亲和力,pH独立性,对ATP代谢物和其他核苷酸的高选择性。为了实现体内验证,我们介绍了伯爵/ C-HC,用于与神经元膜和Alexa Fluor 488结合以进行比例测量。由此得到的ATPOS复合物与生物小鼠的脑皮质中的神经元结合,并且在响应于电刺激,清楚地通过响应于电刺激而表现出同心繁殖的细胞外ATP释放波。 ATPOS应该有助于探测体内各种生物过程的细胞外ATP动态。

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