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Publication : Connectomic analysis reveals an interneuron with an integral role in the retinal circuit for night vision.

First Author  Park SJ Year  2020
Journal  Elife Volume  9
PubMed ID  32412412 Mgi Jnum  J:353233
Mgi Id  MGI:6444986 Doi  10.7554/eLife.56077
Citation  Park SJ, et al. (2020) Connectomic analysis reveals an interneuron with an integral role in the retinal circuit for night vision. Elife 9
abstractText  Night vision in mammals depends fundamentally on rod photoreceptors and the well-studied rod bipolar (RB) cell pathway. The central neuron in this pathway, the AII amacrine cell (AC), exhibits a spatially tuned receptive field, composed of an excitatory center and an inhibitory surround, that propagates to ganglion cells, the retina''s projection neurons. The circuitry underlying the surround of the AII, however, remains unresolved. Here, we combined structural, functional and optogenetic analyses of the mouse retina to discover that surround inhibition of the AII depends primarily on a single interneuron type, the NOS-1 AC: a multistratified, axon-bearing GABAergic cell, with dendrites in both ON and OFF synaptic layers, but with a pure ON (depolarizing) response to light. Our study demonstrates generally that novel neural circuits can be identified from targeted connectomic analyses and specifically that the NOS-1 AC mediates long-range inhibition during night vision and is a major element of the RB pathway.
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