Genetic Targeting and Chemogenetic Inhibition of Newborn Neurons.

Hum Gene Ther Methods

Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.

Published: December 2018

AI Article Synopsis

  • The study aimed to create a refined method to silence specific cells in the brain using a unique genetic approach.
  • Researchers combined a transgenic mouse expressing a cre recombinase with a lentiviral system to deliver an ivermectin (IVM)-gated chloride channel to new granule cells in the dentate gyrus of adult mice.
  • The results showed that IVM successfully silenced neuronal activity by preventing the expression of the immediate early gene EGR1 in treated cells, demonstrating a targeted strategy for regulating brain activity.

Article Abstract

The aim of this study was to develop a method to silence a very specific set of cells in a spatially and temporally refined manner. Here, an approach is presented that combines the use of a transgenic mouse line, expressing cre recombinase under a nestin promoter, with lentiviral delivery of a floxed, ivermectin (IVM)-gated chloride channel construct to the dentate gyrus. This approach was used to express an IVM-sensitive chloride channel in newly born granule cells in adult mouse brains, and its ability to silence neuronal activity was tested by analyzing the effect on immediate early gene expression in cre-transgenic primary neuronal cultures. IVM treatment of cells expressing the chloride channel prevented gabazine-induced expression of the immediate early gene product EGR1, while cells expressing a control inactive channel or no channel retained their EGR1 response. Thus, a genetic strategy is presented for targeting a specific neurogenic niche for transgene expression in the adult mouse brain, and proof of principle is shown that it can be used as a method for silencing neuronal activity.

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Source
http://dx.doi.org/10.1089/hgtb.2018.182DOI Listing

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