Literature DB >> 7472465

Cholinergic, GABAergic, and glutamate-enriched inputs from the mesopontine tegmentum to the subthalamic nucleus in the rat.

M D Bevan1, J P Bolam.   

Abstract

In order to clarify the origin and to examine the neurochemistry and synaptology of the projection from the mesopontine tegmentum (MTg) to the subthalamic nucleus (STN), rats received discrete deposits of anterograde tracers in different regions of the MTg. Anterogradely labeled fibers were examined in the light and electron microscopes. The distribution of GABA or glutamate immunoreactivity was examined by post-embedding immunocytochemistry. The anterograde tracing demonstrated that the projection to the STN arises from at least three divisions of the MTg: the area defined by the cholinergic neurons of the pedunculopontine region (PPN-Ch 5), the more medial and largely noncholinergic midbrain extrapyramidal area (MEA) and to a lesser extent the laterodorsal tegmental nucleus (LDTg). Post-embedding immunocytochemistry revealed that there are GABA-immunopositive and immunonegative components to this projection and at least a proportion of the GABA-immunonegative component is enriched in glutamate immunoreactivity. The similarity of the morphology, trajectory and synaptology of the anterogradely labeled fibers and the choline acetyltransferase (ChAT)-immunopositive fibers supports the proposal that at least part of the projection is cholinergic. The terminals anterogradely labeled from the MTg and the ChAT-immunoreactive terminals form asymmetrical synapses with the dendrites and spines of subthalamic neurons. Both anterogradely labeled and ChAT-positive terminals make convergent synaptic contacts with GABA-immunoreactive terminals that form symmetrical synaptic contacts and are probably derived from the globus pallidus. Taken together these findings imply that the MTg sends cholinergic, GABAergic and glutamatergic projections to the STN where at least one of the functional roles is to modulate the indirect pathway of information flow through the basal ganglia that is carried via the pallidosubthalamic projection.

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Year:  1995        PMID: 7472465      PMCID: PMC6578076     

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


  54 in total

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Authors:  J P Bolam; J J Hanley; P A Booth; M D Bevan
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2.  Presynaptic dopamine D2 and muscarine M3 receptors inhibit excitatory and inhibitory transmission to rat subthalamic neurones in vitro.

Authors:  K Z Shen; S W Johnson
Journal:  J Physiol       Date:  2000-06-01       Impact factor: 5.182

3.  The switch of subthalamic neurons from an irregular to a bursting pattern does not solely depend on their GABAergic inputs in the anesthetic-free rat.

Authors:  Nadia Urbain; Nicolas Rentéro; Damien Gervasoni; Bernard Renaud; Guy Chouvet
Journal:  J Neurosci       Date:  2002-10-01       Impact factor: 6.167

4.  Roles of the M1 muscarinic acetylcholine receptor subtype in the regulation of basal ganglia function and implications for the treatment of Parkinson's disease.

Authors:  Zixiu Xiang; Analisa D Thompson; Carrie K Jones; Craig W Lindsley; P Jeffrey Conn
Journal:  J Pharmacol Exp Ther       Date:  2011-12-01       Impact factor: 4.030

5.  Cholinergic and non-cholinergic mesopontine tegmental neurons projecting to the subthalamic nucleus in the rat.

Authors:  Takako Kita; Hitoshi Kita
Journal:  Eur J Neurosci       Date:  2010-12-31       Impact factor: 3.386

6.  Pedunculopontine and laterodorsal tegmental nuclei contain distinct populations of cholinergic, glutamatergic and GABAergic neurons in the rat.

Authors:  Hui-Ling Wang; Marisela Morales
Journal:  Eur J Neurosci       Date:  2009-01       Impact factor: 3.386

Review 7.  Dichotomy between motor and cognitive functions of midbrain cholinergic neurons.

Authors:  Nadine K Gut; Juan Mena-Segovia
Journal:  Neurobiol Dis       Date:  2018-09-10       Impact factor: 5.996

Review 8.  Neurosteroids and cholinergic systems: implications for sleep and cognitive processes and potential role of age-related changes.

Authors:  Olivier George; Monique Vallée; Michel Le Moal; Willy Mayo
Journal:  Psychopharmacology (Berl)       Date:  2006-01-17       Impact factor: 4.530

9.  Synaptic integration of functionally diverse pallidal information in the entopeduncular nucleus and subthalamic nucleus in the rat.

Authors:  M D Bevan; N P Clarke; J P Bolam
Journal:  J Neurosci       Date:  1997-01-01       Impact factor: 6.167

10.  Short-term depression of external globus pallidus-subthalamic nucleus synaptic transmission and implications for patterning subthalamic activity.

Authors:  Jeremy F Atherton; Ariane Menard; Nadia Urbain; Mark D Bevan
Journal:  J Neurosci       Date:  2013-04-24       Impact factor: 6.167

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