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Combining optogenetics with artificial microRNAs to characterize the effects of gene knockdown on presynaptic function within intact neuronal circuits

Thalhammer, Agnes
•
Jaudon, Fanny
•
Cingolani, Lorenzo A.
2018
  • journal article

Periodico
JOURNAL OF VISUALIZED EXPERIMENTS
Abstract
The purpose of this protocol is to characterize the effect of gene knockdown on presynaptic function within intact neuronal circuits. We describe a workflow on how to combine artificial microRNA (miR)-mediated RNA interference with optogenetics to achieve selective stimulation of manipulated presynaptic boutons in acute brain slices. The experimental approach involves the use of a single viral construct and a single neuron-specific promoter to drive the expression of both an optogenetic probe and artificial miR(s) against presynaptic gene(s). When stereotactically injected in the brain region of interest, the expressed construct makes it possible to stimulate with light exclusively the neurons with reduced expression of the gene(s) under investigation. This strategy does not require the development and maintenance of genetically modified mouse lines and can in principle be applied to other organisms and to any neuronal gene of choice. We have recently applied it to investigate how the knockdown of alternative splice isoforms of presynaptic P/Q-type voltage-gated calcium channels (VGCCs) regulates shortterm synaptic plasticity at CA3 to CA1 excitatory synapses in acute hippocampal slices. A similar approach could also be used to manipulate and probe the neuronal circuitry in vivo.
DOI
10.3791/57223
WOS
WOS:000443329500123
Archivio
http://hdl.handle.net/11368/2940616
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85044761334
https://www.jove.com/pdf/57223
Diritti
open access
license:creative commons
license uri:http://creativecommons.org/licenses/by-nc-nd/4.0/
FVG url
https://arts.units.it/bitstream/11368/2940616/1/Thalhammer2018.pdf
Soggetti
  • ChETA

  • Issue 133

  • Knockdown

  • MicroRNA

  • Neuroscience

  • Optogenetic

  • Presynaptic

  • RAAV1/2

  • Recombinant adeno-ass...

  • RNA extraction

  • RNA interference

  • Synaptic plasticity

  • Synaptic transmission...

  • Ultrafast channelrhod...

  • Animal

  • Calcium Channels, N-T...

  • Gene Knockdown Techni...

  • Mice

  • MicroRNA

  • Neuron

  • Optogenetic

  • Presynaptic Terminal

  • Rat

  • Neuroscience (all)

  • Chemical Engineering ...

  • Biochemistry, Genetic...

  • Immunology and Microb...

Web of Science© citazioni
4
Data di acquisizione
Mar 21, 2024
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