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Imaging extracellular ATP with a genetically-encoded, ratiometric fluorescent sensor

机译:使用遗传编码的比例荧光传感器对细胞外ATP进行成像

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摘要

Extracellular adenosine triphosphate (ATP) is a key purinergic signal that mediates cell-to-cell communication both within and between organ systems. We address the need for a robust and minimally invasive approach to measuring extracellular ATP by re-engineering the ATeam ATP sensor to be expressed on the cell surface. Using this approach, we image real-time changes in extracellular ATP levels with a sensor that is fully genetically-encoded and does not require an exogenous substrate. In addition, the sensor is ratiometric to allow for reliable quantitation of extracellular ATP fluxes. Using live-cell microscopy, we characterize sensor performance when expressed on cultured Neuro2A cells, and we measure both stimulated release of ATP and its clearance by ectonucleotidases. Thus, this proof-of-principle demonstrates a first-generation sensor to report extracellular ATP dynamics that may be useful for studying purinergic signaling in living specimens.
机译:细胞外三磷酸腺苷(ATP)是主要的嘌呤能信号,可介导器官系统内和器官系统之间的细胞间通信。我们通过重新设计要在细胞表面表达的ATeam ATP传感器,来解决对测量细胞外ATP的鲁棒且微创方法的需求。使用这种方法,我们使用完全经过基因编码且不需要外源底物的传感器,对细胞外ATP水平的实时变化进行成像。此外,该传感器是比例式的,可以可靠地定量细胞外ATP通量。使用活细胞显微镜,我们表征了在培养的Neuro2A细胞上表达时的传感器性能,并且我们测量了受激释放的ATP及其通过胞外核苷酸酶的清除率。因此,这一原理证明证明了第一代传感器能够报告细胞外ATP的动态变化,这对于研究活体标本中的嘌呤能信号传递可能是有用的。

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