Literature DB >> 10799761

Neurotensin regulates intracellular calcium in ventral tegmental area astrocytes: evidence for the involvement of multiple receptors.

L E Trudeau1.   

Abstract

Recent evidence suggests that some types of neurotensin receptors may be expressed by astrocytes. In order to explore the function of neurotensin receptors in astrocytes, the effect of a neurotensin receptor agonist, neurotensin(8-13), on intracellular Ca(2+) dynamics in mixed neuronal/glial cultures prepared from rat ventral tegmental area was examined. It was found that neurotensin(8-13) induces a long-lasting rise in intracellular Ca(2+) concentration in a subset of glial fibrilary acidic protein-positive glial cells. This response displays extensive desensitization and appears to implicate both intracellular and extracellular Ca(2+) sources. In the absence of extracellular Ca(2+), neurotensin(8-13) evokes only a short-lasting rise in intracellular Ca(2+). The neurotensin-evoked intracellular Ca(2+) accumulation is blocked by the phospholipase C inhibitor U73122 and by thapsigargin, suggesting that it is initiated by release of Ca(2+) from an inositol triphosphate-dependent store. The Ca(2+)-mobilizing action of neurotensin(8-13) in astrocytes is dependent on at least two receptors, because the response is blocked in part only by SR48692, a type 1 neurotensin receptor antagonist, and is blocked completely by SR142948A, a novel neurotensin receptor antagonist. The finding that the type 2 neurotensin receptor agonist levocabastine fails to mimic or alter the effects of neurotensin(8-13) on intracellular Ca(2+) makes it unlikely that the type 2 neurotensin receptor is involved. In summary, these results show that functional neurotensin receptors are present in cultured ventral tegmental area astrocytes and that their activation induces a highly desensitizing rise in intracellular Ca(2+). The pharmacological profile of this response suggests that a type 1 neurotensin receptor is involved but that another, possibly novel, non-type 2 neurotensin receptor is also implicated. If present in vivo, such signalling could be involved in some of the physiological actions of neurotensin.

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Year:  2000        PMID: 10799761     DOI: 10.1016/s0306-4522(99)00597-7

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  15 in total

1.  Different interactions of prolyl oligopeptidase and neurotensin in dopaminergic function of the rat nigrostriatal and mesolimbic pathways.

Authors:  I Peltonen; T T Myöhänen; P T Männistö
Journal:  Neurochem Res       Date:  2012-06-23       Impact factor: 3.996

2.  Neurotensin reduces glutamatergic transmission in the dorsolateral striatum via retrograde endocannabinoid signaling.

Authors:  Henry H Yin; Louise Adermark; David M Lovinger
Journal:  Neuropharmacology       Date:  2007-06-22       Impact factor: 5.250

Review 3.  The role of neurotensin in central nervous system pathophysiology: what is the evidence?

Authors:  Fannie St-Gelais; Claudia Jomphe; Louis-Eric Trudeau
Journal:  J Psychiatry Neurosci       Date:  2006-07       Impact factor: 6.186

4.  Striatal dopamine receptor plasticity in neurotensin deficient mice.

Authors:  Lucy G Chastain; Hongyan Qu; Chase H Bourke; P Michael Iuvone; Paul R Dobner; Charles B Nemeroff; Becky Kinkead
Journal:  Behav Brain Res       Date:  2014-11-15       Impact factor: 3.332

5.  Neurotensin Release from Dopamine Neurons Drives Long-Term Depression of Substantia Nigra Dopamine Signaling.

Authors:  Christopher W Tschumi; Harris E Blankenship; Ramaswamy Sharma; William B Lynch; Michael J Beckstead
Journal:  J Neurosci       Date:  2022-07-06       Impact factor: 6.709

6.  Role of calcium in neurotensin-evoked enhancement in firing in mesencephalic dopamine neurons.

Authors:  Fannie St-Gelais; Mark Legault; Marie-Josée Bourque; Pierre-Paul Rompré; Louis-Eric Trudeau
Journal:  J Neurosci       Date:  2004-03-10       Impact factor: 6.167

7.  Perturbation of synaptic vesicle delivery during neurotransmitter release triggered independently of calcium influx.

Authors:  Patrice Congar; Louis-Eric Trudeau
Journal:  J Physiol       Date:  2002-08-01       Impact factor: 5.182

8.  Diverse roles of neurotensin agonists in the central nervous system.

Authors:  Mona Boules; Zhimin Li; Kristin Smith; Paul Fredrickson; Elliott Richelson
Journal:  Front Endocrinol (Lausanne)       Date:  2013-03-22       Impact factor: 5.555

9.  Neurotensin-produced antinociception in the rostral ventromedial medulla is partially mediated by spinal cord norepinephrine.

Authors:  A V Buhler; H K Proudfit; G F Gebhart
Journal:  Pain       Date:  2007-07-30       Impact factor: 7.926

Review 10.  Astrocyte-neuron signaling in the mesolimbic dopamine system: the hidden stars of dopamine signaling.

Authors:  Michelle Corkrum; Alfonso Araque
Journal:  Neuropsychopharmacology       Date:  2021-07-12       Impact factor: 8.294

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