We report development of the first genetically encoded bioluminescent indicator for membrane voltage called LOTUS-V. Since it is bioluminescent, imaging LOTUS-V does not require external light illumination. This allows bidirectional optogenetic control of cellular activity triggered by Channelrhodopsin2 and Halorhodopsin during voltage imaging. The other advantage of LOTUS-V is the robustness of a signal-to-background ratio (SBR) wherever it expressed, even in the specimens where autofluorescence from environment severely interferes fluorescence imaging. Through imaging of moving cardiomyocyte aggregates, we demonstrated the advantages of LOTUS-V in long-term imaging are attributable to the absence of phototoxicity, and photobleaching in bioluminescent imaging, combined with the ratiometric aspect of LOTUS-V design. Collectively LOTUS-V extends the scope of excitable cell control and simultaneous voltage phenotyping, which should enable applications in bioscience, medicine and pharmacology previously not possible.
Genetically encoded bioluminescent voltage indicator for multi-purpose use in wide range of bioimaging.
基因编码的生物发光电压指示器,可用于多种生物成像应用
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作者:Inagaki Shigenori, Tsutsui Hidekazu, Suzuki Kazushi, Agetsuma Masakazu, Arai Yoshiyuki, Jinno Yuka, Bai Guirong, Daniels Matthew J, Okamura Yasushi, Matsuda Tomoki, Nagai Takeharu
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2017 | 起止号: | 2017 Feb 13; 7:42398 |
| doi: | 10.1038/srep42398 | ||
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