Department of Chemistry, ‡Department of Molecular & Cell Biology, and §Helen Wills Neuroscience Institute, University of California , Berkeley, California 94720, United States.
J Am Chem Soc. 2016 Jul 27;138(29):9085-8. doi: 10.1021/jacs.6b05672. Epub 2016 Jul 18.
We present the design, synthesis, and application of a new family of fluorescent voltage indicators based on isomerically pure tetramethylrhodamines. These new Rhodamine Voltage Reporters, or RhoVRs, use photoinduced electron transfer (PeT) as a trigger for voltage sensing, display excitation and emission profiles in the green to orange region of the visible spectrum, demonstrate high sensitivity to membrane potential changes (up to 47% ΔF/F per 100 mV), and employ a tertiary amide derived from sarcosine, which aids in membrane localization and simultaneously simplifies the synthetic route to the voltage sensors. The most sensitive of the RhoVR dyes, RhoVR 1, features a methoxy-substituted diethylaniline donor and phenylenevinylene molecular wire at the 5'-position of the rhodamine aryl ring, exhibits the highest voltage sensitivity to date for red-shifted PeT-based voltage sensors, and is compatible with simultaneous imaging alongside green fluorescent protein-based indicators. The discoveries that sarcosine-based tertiary amides in the context of molecular-wire voltage indicators prevent dye internalization and 5'-substituted voltage indicators exhibit improved voltage sensitivity should be broadly applicable to other types of PeT-based voltage-sensitive fluorophores.
我们提出了一种基于异构纯四甲基罗丹明的新型荧光电压指示剂家族的设计、合成和应用。这些新的罗丹明电压报告染料(RhoVRs)使用光诱导电子转移(PeT)作为电压感应的触发机制,在可见光谱的绿色到橙色区域显示激发和发射谱,对膜电位变化具有高灵敏度(高达每 100 mV 47%的ΔF/F),并采用源自肌氨酸的叔酰胺,这有助于膜定位,同时简化了电压传感器的合成途径。最敏感的 RhoVR 染料 RhoVR1 具有甲氧基取代的二乙苯胺供体和罗丹明芳环 5'-位的苯并乙烯分子线,对红移 PeT 基电压传感器表现出迄今为止最高的电压灵敏度,并且与绿色荧光蛋白基指示剂的同时成像兼容。在分子线电压指示剂的情况下,基于肌氨酸的叔酰胺可防止染料内化,5'-取代的电压指示剂可提高电压灵敏度,这一发现应该广泛适用于其他类型的基于 PeT 的电压敏感荧光团。