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Robust optogenetic inhibition with red-light-sensitive anion-conducting channelrhodopsins.

Johannes Oppermann | Andrey Rozenberg | Thomaz Fabrin | Cristian González-Cabrera | Rafael Parker | Oded Béjà | Matthias Prigge | Peter Hegemann
eLife | 2024

Channelrhodopsins (ChRs) are light-gated ion channels widely used to optically activate or silence selected electrogenic cells, such as individual brain neurons. Here, we describe identifying and characterizing a set of anion-conducting ChRs (ACRs) from diverse taxa and representing various branches of the ChR phylogenetic tree. The Mantoniella squamata ACR (MsACR1) showed high sensitivity to yellow-green light (λmax at 555 nm) and was further engineered for optogenetic applications. A single amino-acid substitution that mimicked red-light-sensitive rhodopsins like Chrimson shifted the photosensitivity 20 nm toward red light and accelerated photocurrent kinetics. Hence, it was named red and accelerated ACR, raACR. Both wild-type and mutant are capable optical silencers at low light intensities in mouse neurons in vitro and in vivo, while raACR offers a higher temporal resolution.

Pubmed ID: 39401075

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None found

Associated grants

  • Agency: Deutsche Forschungsgemeinschaft,
    Id: SFB 1078 B2 221545957
  • Agency: Israel Science Foundation,
    Id: 3131/20
  • Agency: Alexander von Humboldt-Stiftung,
    Id: 99999.001756/2014-01
  • Agency: EU Joint Programme - Neurodegenerative Disease Research,
    Id: JPco-FuND - NiPARK
  • Agency: Leibniz-Gemeinschaft,
    Id: Program 'BestMinds' MP J28/2017 SheLi
  • Agency: Aligning Science Across Parkinson's,
    Id: ASAP-020505

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