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Publication : A sign-inverted receptive field of inhibitory interneurons provides a pathway for ON-OFF interactions in the retina.

First Author  Jo A Year  2023
Journal  Nat Commun Volume  14
Issue  1 Pages  5937
PubMed ID  37741839 Mgi Jnum  J:341203
Mgi Id  MGI:7532141 Doi  10.1038/s41467-023-41638-3
Citation  Jo A, et al. (2023) A sign-inverted receptive field of inhibitory interneurons provides a pathway for ON-OFF interactions in the retina. Nat Commun 14(1):5937
abstractText  A fundamental organizing plan of the retina is that visual information is divided into ON and OFF streams that are processed in separate layers. This functional dichotomy originates in the ON and OFF bipolar cells, which then make excitatory glutamatergic synapses onto amacrine and ganglion cells in the inner plexiform layer. We have identified an amacrine cell (AC), the sign-inverting (SI) AC, that challenges this fundamental plan. The glycinergic, ON-stratifying SI-AC has OFF light responses. In opposition to the classical wiring diagrams, it receives inhibitory inputs from glutamatergic ON bipolar cells at mGluR8 synapses, and excitatory inputs from an OFF wide-field AC at electrical synapses. This "inhibitory ON center - excitatory OFF surround" receptive-field of the SI-AC allows it to use monostratified dendrites to conduct crossover inhibition and push-pull activation to enhance light detection by ACs and RGCs in the dark and feature discrimination in the light.
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