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Two-Photon Lifetime Imaging of Voltage Indicating Proteins as a Probe of Absolute Membrane Voltage

机译:电压指示蛋白的双光子寿命成像作为绝对膜电压的探针。

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摘要

Genetically encoded voltage indicators (GEVIs) can report cellular electrophysiology with high resolution in space and time. Two-photon (2P) fluorescence has been explored as a means to image voltage in tissue. Here, we used the 2P electronic excited-state lifetime to probe absolute membrane voltage in a manner that is insensitive to the protein expression level, illumination intensity, or photon detection efficiency. First, we tested several GEVIs for 2P brightness, response speed, and voltage sensitivity. ASAP1 and a previously described citrine-Arch electrochromic Förster resonance energy transfer sensor (dubbed CAESR) showed the best characteristics. We then characterized the voltage-dependent lifetime of ASAP1, CAESR, and ArcLight under voltage-clamp conditions. ASAP1 and CAESR showed voltage-dependent lifetimes, whereas ArcLight did not. These results establish 2P fluorescence lifetime imaging as a viable means of measuring absolute membrane voltage. We discuss the prospects and improvements necessary for applications in tissue.
机译:遗传编码的电压指示器(GEVI)可以在时空上高分辨率地报告细胞电生理学。已经探索了双光子(2P)荧光作为对组织中的电压成像的手段。在这里,我们使用2P电子激发态寿命来探测绝对膜电压,这种方式对蛋白质表达水平,光照强度或光子检测效率不敏感。首先,我们测试了几个GEVI的2P亮度,响应速度和电压灵敏度。 ASAP1和先前描述的黄水晶-Arch电致变色Förster共振能量转移传感器(称为CAESR)显示出最佳特性。然后,我们在电压钳位条件下表征了ASAP1,CAESR和ArcLight的电压相关寿命。 ASAP1和CAESR的寿命取决于电压,而ArcLight没有。这些结果将2P荧光寿命成像确定为测量绝对膜电压的可行方法。我们讨论了在组织中应用所需的前景和改进。

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