Cargando…

Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools

Horizontal cells (HCs) form reciprocal synapses with rod and cone photoreceptors, an arrangement that underlies lateral inhibition in the retina. HCs send negative and positive feedback signals to photoreceptors, but how HCs initiate these signals remains unclear. Unfortunately, because HCs have no...

Descripción completa

Detalles Bibliográficos
Autores principales: Beckwith-Cohen, Billie, Holzhausen, Lars C., Nawy, Scott, Kramer, Richard H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7665903/
https://www.ncbi.nlm.nih.gov/pubmed/33060180
http://dx.doi.org/10.1523/ENEURO.0022-20.2020
_version_ 1783610048725909504
author Beckwith-Cohen, Billie
Holzhausen, Lars C.
Nawy, Scott
Kramer, Richard H.
author_facet Beckwith-Cohen, Billie
Holzhausen, Lars C.
Nawy, Scott
Kramer, Richard H.
author_sort Beckwith-Cohen, Billie
collection PubMed
description Horizontal cells (HCs) form reciprocal synapses with rod and cone photoreceptors, an arrangement that underlies lateral inhibition in the retina. HCs send negative and positive feedback signals to photoreceptors, but how HCs initiate these signals remains unclear. Unfortunately, because HCs have no unique neurotransmitter receptors, there are no pharmacological treatments for perturbing membrane potential specifically in HCs. Here we use transgenic zebrafish whose HCs express alien receptors, enabling cell-type-specific control by cognate alien agonists. To depolarize HCs, we used the Phe-Met-Arg-Phe-amide (FMRFamide)-gated Na(+) channel (FaNaC) activated by the invertebrate neuropeptide FMRFamide. To hyperpolarize HCs we used a pharmacologically selective actuator module (PSAM)-glycine receptor (GlyR), an engineered Cl(–) selective channel activated by a synthetic agonist. Expression of FaNaC or PSAM-GlyR was restricted to HCs with the cell-type selective promoter for connexin-55.5. We assessed HC-feedback control of photoreceptor synapses in three ways. First, we measured presynaptic exocytosis from photoreceptor terminals using the fluorescent dye FM1-43. Second, we measured the electroretinogram (ERG) b-wave, a signal generated by postsynaptic responses. Third, we used Ca(2+) imaging in retinal ganglion cells (RGCs) expressing the Ca(2+) indicator GCaMP6. Addition of FMRFamide significantly decreased FM1-43 destaining in darkness, whereas the addition of PSAM-GlyR significantly increased it. However, both agonists decreased the light-elicited ERG b-wave and eliminated surround inhibition of the Ca(2+) response of RGCs. Taken together, our findings show that chemogenetic tools can selectively manipulate negative feedback from HCs, providing a platform for understanding its mechanism and helping to elucidate its functional roles in visual information processing at a succession of downstream stages.
format Online
Article
Text
id pubmed-7665903
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Society for Neuroscience
record_format MEDLINE/PubMed
spelling pubmed-76659032020-11-16 Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools Beckwith-Cohen, Billie Holzhausen, Lars C. Nawy, Scott Kramer, Richard H. eNeuro Research Article: New Research Horizontal cells (HCs) form reciprocal synapses with rod and cone photoreceptors, an arrangement that underlies lateral inhibition in the retina. HCs send negative and positive feedback signals to photoreceptors, but how HCs initiate these signals remains unclear. Unfortunately, because HCs have no unique neurotransmitter receptors, there are no pharmacological treatments for perturbing membrane potential specifically in HCs. Here we use transgenic zebrafish whose HCs express alien receptors, enabling cell-type-specific control by cognate alien agonists. To depolarize HCs, we used the Phe-Met-Arg-Phe-amide (FMRFamide)-gated Na(+) channel (FaNaC) activated by the invertebrate neuropeptide FMRFamide. To hyperpolarize HCs we used a pharmacologically selective actuator module (PSAM)-glycine receptor (GlyR), an engineered Cl(–) selective channel activated by a synthetic agonist. Expression of FaNaC or PSAM-GlyR was restricted to HCs with the cell-type selective promoter for connexin-55.5. We assessed HC-feedback control of photoreceptor synapses in three ways. First, we measured presynaptic exocytosis from photoreceptor terminals using the fluorescent dye FM1-43. Second, we measured the electroretinogram (ERG) b-wave, a signal generated by postsynaptic responses. Third, we used Ca(2+) imaging in retinal ganglion cells (RGCs) expressing the Ca(2+) indicator GCaMP6. Addition of FMRFamide significantly decreased FM1-43 destaining in darkness, whereas the addition of PSAM-GlyR significantly increased it. However, both agonists decreased the light-elicited ERG b-wave and eliminated surround inhibition of the Ca(2+) response of RGCs. Taken together, our findings show that chemogenetic tools can selectively manipulate negative feedback from HCs, providing a platform for understanding its mechanism and helping to elucidate its functional roles in visual information processing at a succession of downstream stages. Society for Neuroscience 2020-10-22 /pmc/articles/PMC7665903/ /pubmed/33060180 http://dx.doi.org/10.1523/ENEURO.0022-20.2020 Text en Copyright © 2020 Beckwith-Cohen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article: New Research
Beckwith-Cohen, Billie
Holzhausen, Lars C.
Nawy, Scott
Kramer, Richard H.
Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title_full Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title_fullStr Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title_full_unstemmed Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title_short Controlling Horizontal Cell-Mediated Lateral Inhibition in Transgenic Zebrafish Retina with Chemogenetic Tools
title_sort controlling horizontal cell-mediated lateral inhibition in transgenic zebrafish retina with chemogenetic tools
topic Research Article: New Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7665903/
https://www.ncbi.nlm.nih.gov/pubmed/33060180
http://dx.doi.org/10.1523/ENEURO.0022-20.2020
work_keys_str_mv AT beckwithcohenbillie controllinghorizontalcellmediatedlateralinhibitionintransgeniczebrafishretinawithchemogenetictools
AT holzhausenlarsc controllinghorizontalcellmediatedlateralinhibitionintransgeniczebrafishretinawithchemogenetictools
AT nawyscott controllinghorizontalcellmediatedlateralinhibitionintransgeniczebrafishretinawithchemogenetictools
AT kramerrichardh controllinghorizontalcellmediatedlateralinhibitionintransgeniczebrafishretinawithchemogenetictools