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Dopamine-Dependent Sensitization of Rod Bipolar Cells by GABA Is Conveyed Through Wide-Field Amacrine Cells

Overview
Journal J Neurosci
Specialty Neurology
Date 2017 Dec 9
PMID 29217689
Citations 14
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Abstract

The vertebrate retina has the remarkable ability to support visual function under conditions of limited illumination, including the processing of signals evoked by single photons. Dim-light vision is regulated by several adaptive mechanisms. The mechanism explored in this study is responsible for increasing the light sensitivity and operational range of rod bipolar cells, the retinal neurons operating immediately downstream of rod photoreceptors. This sensitization is achieved through the sustained dopamine-dependent GABA release from other retinal neurons. Our goals were to identify the cell type responsible for the GABA release and the site of its modulation by dopamine. Previous studies have suggested the involvement of amacrine and/or horizontal cells. We now demonstrate, using mice of both sexes, that horizontal cells do not participate in this mechanism. Instead, sustained GABA input is provided by a subpopulation of wide-field amacrine cells, which stimulate the GABA receptors at rod bipolar cell axons. We also found that dopamine does not act directly on either of these cells. Rather, it suppresses inhibition imposed on these wide-field cells by another subpopulation of upstream GABAergic amacrine cells, thereby sustaining the GABA receptor activation required for rod bipolar cell sensitization. The vertebrate retina has an exquisite ability to adjust information processing to ever-changing conditions of ambient illumination, from bright sunlight to single-photon counting under dim starlight. Operation under each of these functional regimes requires an engagement of specific adaptation mechanisms. Here, we describe a mechanism optimizing the performance of the dim-light channel of vision, which consists of sensitizing rod bipolar cells by a sustained GABAergic input originating from a population of wide-field amacrine cells. Wide-field amacrine cells span large segments of the retina, making them uniquely equipped to normalize and optimize response sensitivity across distant receptive fields and preclude any bias toward local light-intensity fluctuations.

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References
1.
Ichinose T, Shields C, Lukasiewicz P . Sodium channels in transient retinal bipolar cells enhance visual responses in ganglion cells. J Neurosci. 2005; 25(7):1856-65. PMC: 6725932. DOI: 10.1523/JNEUROSCI.5208-04.2005. View

2.
Liu X, Grove J, Hirano A, Brecha N, Barnes S . Dopamine D1 receptor modulation of calcium channel currents in horizontal cells of mouse retina. J Neurophysiol. 2016; 116(2):686-97. PMC: 4982899. DOI: 10.1152/jn.00990.2015. View

3.
Taylor W . TTX attenuates surround inhibition in rabbit retinal ganglion cells. Vis Neurosci. 1999; 16(2):285-90. DOI: 10.1017/s0952523899162096. View

4.
Guo C, Hirano A, Stella Jr S, Bitzer M, Brecha N . Guinea pig horizontal cells express GABA, the GABA-synthesizing enzyme GAD 65, and the GABA vesicular transporter. J Comp Neurol. 2010; 518(10):1647-69. PMC: 3736838. DOI: 10.1002/cne.22294. View

5.
Pan Z, Hu H . Voltage-dependent Na(+) currents in mammalian retinal cone bipolar cells. J Neurophysiol. 2000; 84(5):2564-71. DOI: 10.1152/jn.2000.84.5.2564. View