Javascript must be enabled to continue!
GABAergic inhibition in dual-transmission cholinergic and GABAergic striatal interneurons is abolished in Parkinson disease
View through CrossRef
AbstractWe report that half striatal cholinergic interneurons are dual transmitter cholinergic and GABAergic interneurons (CGINs) expressing ChAT, GAD65, Lhx7, and Lhx6 mRNAs, labeled with GAD and VGAT, generating monosynaptic dual cholinergic/GABAergic currents and an inhibitory pause response. Dopamine deprivation increases CGINs ongoing activity and abolishes GABAergic inhibition including the cortico-striatal pause because of high [Cl−]i levels. Dopamine deprivation also dramatically increases CGINs dendritic arbors and monosynaptic interconnections probability, suggesting the formation of a dense CGINs network. The NKCC1 chloride importer antagonist bumetanide, which reduces [Cl−]i levels, restores GABAergic inhibition, the cortico-striatal pause-rebound response, and attenuates motor effects of dopamine deprivation. Therefore, most of the striatal cholinergic excitatory drive is balanced by a concomitant powerful GABAergic inhibition that is impaired by dopamine deprivation. The attenuation by bumetanide of cardinal features of Parkinson’s disease paves the way to a novel therapeutic strategy based on a restoration of low [Cl−]i levels and GABAergic inhibition.
Springer Science and Business Media LLC
Title: GABAergic inhibition in dual-transmission cholinergic and GABAergic striatal interneurons is abolished in Parkinson disease
Description:
AbstractWe report that half striatal cholinergic interneurons are dual transmitter cholinergic and GABAergic interneurons (CGINs) expressing ChAT, GAD65, Lhx7, and Lhx6 mRNAs, labeled with GAD and VGAT, generating monosynaptic dual cholinergic/GABAergic currents and an inhibitory pause response.
Dopamine deprivation increases CGINs ongoing activity and abolishes GABAergic inhibition including the cortico-striatal pause because of high [Cl−]i levels.
Dopamine deprivation also dramatically increases CGINs dendritic arbors and monosynaptic interconnections probability, suggesting the formation of a dense CGINs network.
The NKCC1 chloride importer antagonist bumetanide, which reduces [Cl−]i levels, restores GABAergic inhibition, the cortico-striatal pause-rebound response, and attenuates motor effects of dopamine deprivation.
Therefore, most of the striatal cholinergic excitatory drive is balanced by a concomitant powerful GABAergic inhibition that is impaired by dopamine deprivation.
The attenuation by bumetanide of cardinal features of Parkinson’s disease paves the way to a novel therapeutic strategy based on a restoration of low [Cl−]i levels and GABAergic inhibition.
Related Results
074 Basal Forebrain GABAergic Neurons Promote Arousal by Disinhibiting the Orexin Neurons via Local GABAergic Interneurons
074 Basal Forebrain GABAergic Neurons Promote Arousal by Disinhibiting the Orexin Neurons via Local GABAergic Interneurons
Abstract
Introduction
Optogenetic and chemogenetic studies have shown that activation of basal forebrain (BF) GABAergic neurons ...
Interplay between periodic stimulation and GABAergic inhibition in striatal network oscillations
Interplay between periodic stimulation and GABAergic inhibition in striatal network oscillations
AbstractThe network oscillations are ubiquitous across many brain regions. In the basal ganglia, oscillations are also present at many levels and a wide range of characteristic fre...
PRESYNAPTIC MUSCARINIC-NICOTINIC MODULATION of GABAergic INPUTS to NEURONS in the REM SLEEP EXECUTIVE AREA of the ROSTRAL PONS
PRESYNAPTIC MUSCARINIC-NICOTINIC MODULATION of GABAergic INPUTS to NEURONS in the REM SLEEP EXECUTIVE AREA of the ROSTRAL PONS
ABSTRACT
A large body of evidence indicates that cholinergic neurons in the brainstem tegmental nuclei play a pivotal role in controlling neurons...
Cholinergic Axons Modulate GABAergic Signaling among Hippocampal Interneurons via Postsynaptic α7 Nicotinic Receptors
Cholinergic Axons Modulate GABAergic Signaling among Hippocampal Interneurons via Postsynaptic α7 Nicotinic Receptors
Homopentameric α7 nicotinic receptors have a high affinity for acetylcholine (ACh), are permeable to Ca2+ions, and are abundant in hippocampal interneurons. Although nicotinic agon...
Distinct functional classes of CA1 hippocampal interneurons are modulated by cerebellar stimulation in a coordinated manner
Distinct functional classes of CA1 hippocampal interneurons are modulated by cerebellar stimulation in a coordinated manner
Abstract
There is mounting evidence that the cerebellum impacts hippocampal functioning, but the impact of the cerebellum on hippocampal interneu...
Substantia nigra dopaminergic neurons and striatal interneurons are engaged in three parallel but interdependent postnatal neurotrophic circuits
Substantia nigra dopaminergic neurons and striatal interneurons are engaged in three parallel but interdependent postnatal neurotrophic circuits
AbstractThe striatum integrates motor behavior using a well‐defined microcircuit whose individual components are independently affected in several neurological diseases. The glial ...
Striatal Interneurons in Transgenic Nonhuman Primate Model of Huntington’s Disease
Striatal Interneurons in Transgenic Nonhuman Primate Model of Huntington’s Disease
AbstractHuntington’s disease is an autosomal dominant neurodegenerative disorder associated with progressive motor and cognitive impairments, and the expansion of a cysteine-adenin...
Functional autapses form in striatal parvalbumin interneurons but not medium spiny neurons
Functional autapses form in striatal parvalbumin interneurons but not medium spiny neurons
Abstract
Autapses (or self-synapses) selectively form in specific cell types in many brain regions including the neocortex and the hippocampus, w...

