Bright and Photostable Voltage Sensors Derived from mBaoJin
Zhang, H.; Zhou, S.; Kuzmicheva, T. P.; Subach, O. M.; Grimm, C.; Eom, M.; Baror-Sebban, S.; Adam, Y.; Yoon, Y.-G.; Emilliani, V.; Subach, F. V.; Piatkevich, K. D.
Show abstract
Genetically encoded voltage indicators (GEVIs) are powerful tools for monitoring neuronal activity, but their application, particularly for long-term recordings in vivo, is often limited by photobleaching under the required high illumination intensities. This constraint restricts the total duration of continuous or trial-based experiments, crucial for studying processes like synaptic plasticity or circuit dynamics during behavior. Here, we introduce ElectraON and ElectraOFF, a pair of green fluorescent eFRET-based GEVIs engineered by incorporating a photostability-enhanced derivative of the bright monomeric fluorescent protein mBaoJin with Ace opsin variants. Critically, Electras demonstrate over 6-fold improved photostability compared to state-of-the-art eFRET GEVIs, pAce, and Ace-mNeon2, under one-photon illumination, while characterized by bright green fluorescence, millisecond kinetics, and good membrane localization. This enhanced stability translates to a 3-to >10-fold extension in functional recording duration, maintaining reliable spike detection in both cultured neurons in vitro and sparsely labeled neurons in the awake mouse cortex in vivo. We demonstrated sustained in vivo recordings exceeding 30 minutes, with instances surpassing one hour. Furthermore, Electras show functionality under scanless two-photon excitation in cultured cells. These highly photostable indicators significantly extend the temporal window for voltage imaging, broadening the scope of accessible biological questions.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Three-photon in vivo imaging of neurons and glia in the medial prefrontal cortex with sub-cellular resolution 96%
- A spectral demixing method for high-precision multi-color localization microscopy 96%
- Fast volumetric fluorescence lifetime imaging of multicellular systems using single-objective light-sheet microscopy 95%
Similar papers in this journal
- Bright and sensitive red voltage indicators for imaging action potentials in brain slices and pancreatic islets 97%
- Photophysics-informed two-photon voltage imaging using FRET-opsin voltage indicators 97%
- Two-photon photoactivated voltage imaging in tissue with an Archaerhodopsin-derived reporter 96%
Similar papers in this journal
- Extended field-of-view ultrathin microendoscopes for high-resolution two-photon imaging with minimal invasiveness in awake mice 97%
- Aberration correction in long GRIN lens-based microendoscopes for extended field-of-view two-photon imaging in deep brain regions 96%
- Intravital Deep-Tumor Single-Beam 2-, 3- and 4-Photon Microscopy 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.