Literature DB >> 9651540

Integrated events in central dopamine transmission as analyzed at multiple levels. Evidence for intramembrane adenosine A2A/dopamine D2 and adenosine A1/dopamine D1 receptor interactions in the basal ganglia.

K Fuxe1, S Ferré, M Zoli, L F Agnati.   

Abstract

An analysis at the network and membrane level has provided evidence that antagonistic interactions between adenosine A2A/dopamine D2 and adenosine A1/dopamine D1 receptors in the ventral and dorsal striatum are at least in part responsible for the motor stimulant effects of adenosine receptor antagonists like caffeine and for the motor depressant actions of adenosine receptor agonists. The results obtained in stably cotransfected cells also underline the hypothesis that the intramembrane A2A/D2 and A1/D1 receptor interactions represent functionally important mechanisms that may be the major mechanism for the demonstrated antagonistic A2A/D2 and A1/D1 receptor interactions found in vivo in behavioural studies and in studies on in vivo microdialysis of the striopallidal and strioentopeduncular GABAergic pathways. A major mechanism for the direct intramembrane A2A/D2 and A1/D1 receptor interactions may involve formation of A2A/D2 and A1/D1 heterodimers leading to allosteric changes that will alter the affinity as well as the G protein coupling and thus the efficacy to control the target proteins in the membranes. This is the first molecular network to cellular integration in the nerve cell membrane and may be well suited for a number of integrated tasks and can be performed in a short-time scale, in comparison with the very long-time scale observed when receptor heteroregulation involves phosphorylation or receptor resynthesis. Multiple receptor-receptor interactions within the membranes through formation of receptor clusters may lead to the storage of information within the membranes. Such molecular circuits can represent hidden layers within the membranes that substantially increase the computational potential of neuronal networks. These molecular circuits are biased and may therefore represent part of the molecular mechanism for the storage of memory traces (engrams) in the membranes. Copyright 1998 Elsevier Science B.V. All rights reserved.

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Year:  1998        PMID: 9651540     DOI: 10.1016/s0165-0173(97)00049-0

Source DB:  PubMed          Journal:  Brain Res Brain Res Rev


  66 in total

1.  Antipsychotic-Like Efficacy of Dopamine D2 Receptor-Biased Ligands is Dependent on Adenosine A2A Receptor Expression.

Authors:  Kristoffer Sahlholm; Maricel Gómez-Soler; Marta Valle-León; Marc López-Cano; Jaume J Taura; Francisco Ciruela; Víctor Fernández-Dueñas
Journal:  Mol Neurobiol       Date:  2017-08-05       Impact factor: 5.590

2.  Adenosine A2A receptors in the nucleus accumbens bi-directionally alter cocaine seeking in rats.

Authors:  Casey E O'Neill; McKenzie L LeTendre; Ryan K Bachtell
Journal:  Neuropsychopharmacology       Date:  2011-12-14       Impact factor: 7.853

Review 3.  The lesion of the rat substantia nigra pars compacta dopaminergic neurons as a model for Parkinson's disease memory disabilities.

Authors:  Claudio Da Cunha; Miriam Elizabeth Mendes Angelucci; Newton S Canteras; Susan Wonnacott; Reinaldo N Takahashi
Journal:  Cell Mol Neurobiol       Date:  2002-06       Impact factor: 5.046

4.  Molecular modeling of the human A2a adenosine receptor.

Authors:  A A Ivanov; I I Baskin; V A Palyulin; N S Zefirov
Journal:  Dokl Biochem Biophys       Date:  2003 Mar-Apr       Impact factor: 0.788

Review 5.  Adenosine-dopamine interactions in the pathophysiology and treatment of CNS disorders.

Authors:  K Fuxe; D Marcellino; D O Borroto-Escuela; M Guescini; V Fernández-Dueñas; S Tanganelli; A Rivera; F Ciruela; L F Agnati
Journal:  CNS Neurosci Ther       Date:  2010-03-16       Impact factor: 5.243

Review 6.  Adenosine A2A and dopamine D2 heteromeric receptor complexes and their function.

Authors:  Kjell Fuxe; Sergi Ferré; Meritxell Canals; Maria Torvinen; Anton Terasmaa; Daniel Marcellino; Steven R Goldberg; William Staines; Kirsten X Jacobsen; Carmen Lluis; Amina S Woods; Luigi F Agnati; Rafael Franco
Journal:  J Mol Neurosci       Date:  2005       Impact factor: 3.444

7.  Evaluation of neuronal phosphoproteins as effectors of caffeine and mediators of striatal adenosine A2A receptor signaling.

Authors:  Bogachan Sahin; Stacey Galdi; Joseph Hendrick; Robert W Greene; Gretchen L Snyder; James A Bibb
Journal:  Brain Res       Date:  2006-12-06       Impact factor: 3.252

8.  Injections of the selective adenosine A2A antagonist MSX-3 into the nucleus accumbens core attenuate the locomotor suppression induced by haloperidol in rats.

Authors:  Keita Ishiwari; Lisa J Madson; Andrew M Farrar; Susana M Mingote; John P Valenta; Michael D DiGianvittorio; Lauren E Frank; Merce Correa; Jörg Hockemeyer; Christa Müller; John D Salamone
Journal:  Behav Brain Res       Date:  2006-12-21       Impact factor: 3.332

Review 9.  Intramembrane receptor-receptor interactions: a novel principle in molecular medicine.

Authors:  K Fuxe; M Canals; M Torvinen; D Marcellino; A Terasmaa; S Genedani; G Leo; D Guidolin; Z Diaz-Cabiale; A Rivera; L Lundstrom; U Langel; J Narvaez; S Tanganelli; C Lluis; S Ferré; A Woods; R Franco; L F Agnati
Journal:  J Neural Transm (Vienna)       Date:  2006-10-27       Impact factor: 3.575

10.  Developmental role of adenosine kinase for the expression of sex-dependent neuropsychiatric behavior.

Authors:  D M Osborne; U S Sandau; A T Jones; J W Vander Velden; A M Weingarten; N Etesami; Y Huo; H Y Shen; D Boison
Journal:  Neuropharmacology       Date:  2018-08-23       Impact factor: 5.250

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