4.8 Article

Opto-vTrap, an optogenetic trap for reversible inhibition of vesicular release, synaptic transmission, and behavior

Journal

NEURON
Volume 110, Issue 3, Pages 423-+

Publisher

CELL PRESS
DOI: 10.1016/j.neuron.2021.11.003

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Funding

  1. Institute for Basic Science (IBS), Center for Cognition and Sociality [IBS-R001-D2]
  2. KAIST Institute for the BioCentury
  3. National Research Foundation of Korea [NRF-2020R1A2C3014742]
  4. KAIST

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Spatiotemporal control of brain activity can be achieved using Opto-vTrap, which is a light-inducible and reversible system that temporarily inhibits the release of neurotransmitters. Opto-vTrap significantly reduces synaptic and gliotransmission, leading to inhibition of hippocampus-dependent memory retrieval.
Spatiotemporal control of brain activity by optogenetics has emerged as an essential tool to study brain function. For silencing brain activity, optogenetic probes, such as halorhodopsin and archaerhodopsin, inhibit transmitter release indirectly by hyperpolarizing membrane potentials. However, these probes cause an undesirable ionic imbalance and rebound spikes. Moreover, they are not applicable to use in non-excitable glial cells. Here we engineered Opto-vTrap, a light-inducible and reversible inhibition system to temporarily trap the transmitter -containing vesicles from exocytotic release. Light activation of Opto-vTrap caused full vesicle clusterization and complete inhibition of exocytosis within 1 min, which recovered within 30 min after light off. We found a significant reduction in synaptic and gliotransmission upon activation of Opto-vTrap in acute brain slices. Opto-vTrap significantly inhibited hippocampus-dependent memory retrieval with full recovery within an hour. We propose Opto-vTrap as a next-generation optogenetic silencer to control brain activity and behavior with minimal confounding effects.

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