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Molecular identification of wide-field amacrine cells in mouse retina that encode stimulus orientation

Park, S. J.; Lei, W.; Pisano, J.; Orpia, A.; Minehart, J.; Pottackal, J.; Hanke-Gogokhia, C.; Zapadka, T.; Clarkson-Paredes, C.; Popratiloff, A.; Ross, S. E.; Singer, J. H.; Demb, J.

2023-12-29 neuroscience
10.1101/2023.12.28.573580 bioRxiv
Show abstract

Visual information processing is sculpted by a diverse group of inhibitory interneurons in the retina called amacrine cells. Yet, for most of the >60 amacrine cell types, molecular identities and specialized functional attributes remain elusive. Here, we developed an intersectional genetic strategy to target a group of wide-field amacrine cells (WACs) in mouse retina that co-express the transcription factor Bhlhe22 and the Kappa Opioid Receptor (KOR; B/K WACs). B/K WACs feature straight, unbranched dendrites spanning over 0.5 mm ([~]15{degrees} visual angle) and produce non-spiking responses to either light increments or decrements. Two-photon dendritic population imaging reveals Ca2+ signals tuned to the physical orientations of B/K WAC dendrites, signifying a robust structure-function alignment. B/K WACs establish divergent connections with multiple retinal neurons, including unexpected connections with non-orientation-tuned ganglion cells and bipolar cells. Our work sets the stage for future comprehensive investigations of the most enigmatic group of retinal neurons: WACs.

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