All-optical reporting of inhibitory receptor driving force in the nervous system.

Selfe, Joshua S; Steyn, Teresa J S; Shorer, Eran F; Burman, Richard J; Düsterwald, Kira M; Kraitzick, Ariel Z; Abdelfattah, Ahmed S; Schreiter, Eric R et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Ionic driving forces provide the net electromotive force for ion movement across receptors, channels, and transporters, and are a fundamental property of all cells. In the nervous system, fast synaptic inhibition is mediated by chloride permeable GABA<sub>A</sub> and glycine receptors, and single-cell intracellular recordings have been the only method for estimating driving forces across these receptors (DF<sub>GABAA</sub>). Here we present a tool for quantifying inhibitory receptor driving force named ORCHID: all-Optical Reporting of CHloride Ion Driving force. We demonstrate ORCHID's ability to provide accurate, high-throughput measurements of resting and dynamic DF<sub>GABAA</sub> from genetically targeted cell types over multiple timescales. ORCHID confirms theoretical predictions about the biophysical mechanisms that establish DF<sub>GABAA</sub>, reveals differences in DF<sub>GABAA</sub> between neurons and astrocytes, and affords the first in vivo measurements of intact DF<sub>GABAA</sub>. This work extends our understanding of inhibitory synaptic transmission and demonstrates the potential for all-optical methods to assess ionic driving forces.

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