Literature DB >> 18216190

Regulation of burst activity through presynaptic and postsynaptic GABA(B) receptors in mouse superior colliculus.

Katsuyuki Kaneda1, Penphimon Phongphanphanee, Tomoko Katoh, Kaoru Isa, Yuchio Yanagawa, Kunihiko Obata, Tadashi Isa.   

Abstract

In slice preparations, electrical stimulation of the superficial gray layer (SGS) of the superior colliculus (SC) induces EPSC bursts in neurons in the intermediate gray layer (SGI) when GABA(A) receptor (GABA(A)R)-mediated inhibition is reduced. This preparation has been used as a model system to study signal processing involved in execution of short-latency orienting responses to visual stimuli such as saccadic eye movements. In the present study, we investigated the role of GABA(B) receptors (GABA(B)Rs) in modulating signal transmission in the above pathway with whole-cell patch-clamp recordings in SC slices obtained from GAD67-GFP knock-in mice. Perfusion of the slice with the GABA(B)R antagonist CGP52432 (CGP) greatly prolonged the duration of the EPSC bursts. Local application of CGP to the SGS but not to the SGI produced similar effects. Because SGS stimulation elicited bursts in GABAergic neurons in the SGS when GABA(A)Rs were blocked, these results suggest that GABA released after bursts activates GABA(B)Rs in the SGS, leading to reduced burst duration. We found both postsynaptic and presynaptic actions of GABA(B)Rs in the SGS; activation of postsynaptic GABA(B)Rs induced outward currents in narrow-field vertical cells, whereas it caused shunting inhibition in distal dendrites in wide-field vertical cells. On the other hand, activation of presynaptic GABA(B)Rs suppressed excitatory synaptic transmissions to non-GABAergic neurons in the SGS. These results indicate that synaptically released GABA can activate both presynaptic and postsynaptic GABA(B)Rs in the SGS and limit the duration of burst responses in the SC local circuit.

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Year:  2008        PMID: 18216190      PMCID: PMC6671012          DOI: 10.1523/JNEUROSCI.4666-07.2008

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  13 in total

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Authors:  Michele A Basso; Paul J May
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Review 2.  Exploring the superior colliculus in vitro.

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4.  Instantaneous Midbrain Control of Saccade Velocity.

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Review 5.  The Superior Colliculus: Cell Types, Connectivity, and Behavior.

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Journal:  Neurosci Bull       Date:  2022-04-28       Impact factor: 5.203

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7.  α6* nicotinic acetylcholine receptor expression and function in a visual salience circuit.

Authors:  Elisha D W Mackey; Staci E Engle; Mi Ran Kim; Heidi C O'Neill; Charles R Wageman; Natalie E Patzlaff; Ying Wang; Sharon R Grady; J Michael McIntosh; Michael J Marks; Henry A Lester; Ryan M Drenan
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8.  Selective optical control of synaptic transmission in the subcortical visual pathway by activation of viral vector-expressed halorhodopsin.

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9.  Age-Related Sexual Dimorphism in Temporal Discrimination and in Adult-Onset Dystonia Suggests GABAergic Mechanisms.

Authors:  John S Butler; Ines M Beiser; Laura Williams; Eavan McGovern; Fiona Molloy; Tim Lynch; Dan G Healy; Helena Moore; Richard Walsh; Richard B Reilly; Seán O'Riordan; Cathal Walsh; Michael Hutchinson
Journal:  Front Neurol       Date:  2015-12-14       Impact factor: 4.003

Review 10.  Cervical dystonia: a disorder of the midbrain network for covert attentional orienting.

Authors:  Michael Hutchinson; Tadashi Isa; Anna Molloy; Okka Kimmich; Laura Williams; Fiona Molloy; Helena Moore; Daniel G Healy; Tim Lynch; Cathal Walsh; John Butler; Richard B Reilly; Richard Walsh; Sean O'Riordan
Journal:  Front Neurol       Date:  2014-04-28       Impact factor: 4.003

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