Literature DB >> 31078724

Voltage- and calcium-gated ion channels of neurons in the vertebrate retina.

Matthew J Van Hook1, Scott Nawy2, Wallace B Thoreson3.   

Abstract

In this review, we summarize studies investigating the types and distribution of voltage- and calcium-gated ion channels in the different classes of retinal neurons: rods, cones, horizontal cells, bipolar cells, amacrine cells, interplexiform cells, and ganglion cells. We discuss differences among cell subtypes within these major cell classes, as well as differences among species, and consider how different ion channels shape the responses of different neurons. For example, even though second-order bipolar and horizontal cells do not typically generate fast sodium-dependent action potentials, many of these cells nevertheless possess fast sodium currents that can enhance their kinetic response capabilities. Ca2+ channel activity can also shape response kinetics as well as regulating synaptic release. The L-type Ca2+ channel subtype, CaV1.4, expressed in photoreceptor cells exhibits specific properties matching the particular needs of these cells such as limited inactivation which allows sustained channel activity and maintained synaptic release in darkness. The particular properties of K+ and Cl- channels in different retinal neurons shape resting membrane potentials, response kinetics and spiking behavior. A remaining challenge is to characterize the specific distributions of ion channels in the more than 100 individual cell types that have been identified in the retina and to describe how these particular ion channels sculpt neuronal responses to assist in the processing of visual information by the retina.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Amacrine cell; Horizontal cell; Ion channels; Photoreceptor cell; Retina; Retinal bipolar cell; Retinal ganglion cell

Mesh:

Substances:

Year:  2019        PMID: 31078724      PMCID: PMC6739185          DOI: 10.1016/j.preteyeres.2019.05.001

Source DB:  PubMed          Journal:  Prog Retin Eye Res        ISSN: 1350-9462            Impact factor:   21.198


  639 in total

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2.  Exocytosis at the ribbon synapse of retinal bipolar cells studied in patches of presynaptic membrane.

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3.  Directionally selective calcium signals in dendrites of starburst amacrine cells.

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4.  Response properties of long-range axon-bearing amacrine cells in the dark-adapted rabbit retina.

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5.  A unique role for Kv3 voltage-gated potassium channels in starburst amacrine cell signaling in mouse retina.

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6.  Two types of cone bipolar cells express voltage-gated Na+ channels in the rat retina.

Authors:  Jinjuan Cui; Zhuo-Hua Pan
Journal:  Vis Neurosci       Date:  2008 Sep-Dec       Impact factor: 3.241

7.  Cone dystrophy with supernormal rod response is strictly associated with mutations in KCNV2.

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Journal:  Invest Ophthalmol Vis Sci       Date:  2008-02       Impact factor: 4.799

8.  An excitatory amino acid antagonist blocks cone input to sign-conserving second-order retinal neurons.

Authors:  M M Slaughter; R F Miller
Journal:  Science       Date:  1983-03-11       Impact factor: 47.728

9.  Expression of Nav1.1 in rat retinal AII amacrine cells.

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  19 in total

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2.  Type-specific dendritic integration in mouse retinal ganglion cells.

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3.  Photoreceptive Ganglion Cells Drive Circuits for Local Inhibition in the Mouse Retina.

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4.  T-Type Ca2+ Channels Boost Neurotransmission in Mammalian Cone Photoreceptors.

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5.  Multiple Calcium Channel Types with Unique Expression Patterns Mediate Retinal Signaling at Bipolar Cell Ribbon Synapses.

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6.  Differences in spike generation instead of synaptic inputs determine the feature selectivity of two retinal cell types.

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7.  Bayesian inference for biophysical neuron models enables stimulus optimization for retinal neuroprosthetics.

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Review 10.  Adaptive responses to neurodegenerative stress in glaucoma.

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