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Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes

Our hypothesis is that allosteric receptor-receptor interactions in homo- and heteroreceptor complexes may form the molecular basis of learning and memory. This principle is illustrated by showing how cocaine abuse can alter the adenosine A2AR-dopamine D2R heterocomplexes and their receptor-receptor...

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Autores principales: Borroto-Escuela, Dasiel O., Wydra, Karolina, Pintsuk, Julia, Narvaez, Manuel, Corrales, Fidel, Zaniewska, Magdalena, Agnati, Luigi F., Franco, Rafael, Tanganelli, Sergio, Ferraro, Luca, Filip, Malgorzata, Fuxe, Kjell
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5107220/
https://www.ncbi.nlm.nih.gov/pubmed/27872762
http://dx.doi.org/10.1155/2016/4827268
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author Borroto-Escuela, Dasiel O.
Wydra, Karolina
Pintsuk, Julia
Narvaez, Manuel
Corrales, Fidel
Zaniewska, Magdalena
Agnati, Luigi F.
Franco, Rafael
Tanganelli, Sergio
Ferraro, Luca
Filip, Malgorzata
Fuxe, Kjell
author_facet Borroto-Escuela, Dasiel O.
Wydra, Karolina
Pintsuk, Julia
Narvaez, Manuel
Corrales, Fidel
Zaniewska, Magdalena
Agnati, Luigi F.
Franco, Rafael
Tanganelli, Sergio
Ferraro, Luca
Filip, Malgorzata
Fuxe, Kjell
author_sort Borroto-Escuela, Dasiel O.
collection PubMed
description Our hypothesis is that allosteric receptor-receptor interactions in homo- and heteroreceptor complexes may form the molecular basis of learning and memory. This principle is illustrated by showing how cocaine abuse can alter the adenosine A2AR-dopamine D2R heterocomplexes and their receptor-receptor interactions and hereby induce neural plasticity in the basal ganglia. Studies with A2AR ligands using cocaine self-administration procedures indicate that antagonistic allosteric A2AR-D2R heterocomplexes of the ventral striatopallidal GABA antireward pathway play a significant role in reducing cocaine induced reward, motivation, and cocaine seeking. Anticocaine actions of A2AR agonists can also be produced at A2AR homocomplexes in these antireward neurons, actions in which are independent of D2R signaling. At the A2AR-D2R heterocomplex, they are dependent on the strength of the antagonistic allosteric A2AR-D2R interaction and the number of A2AR-D2R and A2AR-D2R-sigma1R heterocomplexes present in the ventral striatopallidal GABA neurons. It involves a differential cocaine-induced increase in sigma1Rs in the ventral versus the dorsal striatum. In contrast, the allosteric brake on the D2R protomer signaling in the A2AR-D2R heterocomplex of the dorsal striatopallidal GABA neurons is lost upon cocaine self-administration. This is potentially due to differences in composition and allosteric plasticity of these complexes versus those in the ventral striatopallidal neurons.
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spelling pubmed-51072202016-11-21 Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes Borroto-Escuela, Dasiel O. Wydra, Karolina Pintsuk, Julia Narvaez, Manuel Corrales, Fidel Zaniewska, Magdalena Agnati, Luigi F. Franco, Rafael Tanganelli, Sergio Ferraro, Luca Filip, Malgorzata Fuxe, Kjell Neural Plast Review Article Our hypothesis is that allosteric receptor-receptor interactions in homo- and heteroreceptor complexes may form the molecular basis of learning and memory. This principle is illustrated by showing how cocaine abuse can alter the adenosine A2AR-dopamine D2R heterocomplexes and their receptor-receptor interactions and hereby induce neural plasticity in the basal ganglia. Studies with A2AR ligands using cocaine self-administration procedures indicate that antagonistic allosteric A2AR-D2R heterocomplexes of the ventral striatopallidal GABA antireward pathway play a significant role in reducing cocaine induced reward, motivation, and cocaine seeking. Anticocaine actions of A2AR agonists can also be produced at A2AR homocomplexes in these antireward neurons, actions in which are independent of D2R signaling. At the A2AR-D2R heterocomplex, they are dependent on the strength of the antagonistic allosteric A2AR-D2R interaction and the number of A2AR-D2R and A2AR-D2R-sigma1R heterocomplexes present in the ventral striatopallidal GABA neurons. It involves a differential cocaine-induced increase in sigma1Rs in the ventral versus the dorsal striatum. In contrast, the allosteric brake on the D2R protomer signaling in the A2AR-D2R heterocomplex of the dorsal striatopallidal GABA neurons is lost upon cocaine self-administration. This is potentially due to differences in composition and allosteric plasticity of these complexes versus those in the ventral striatopallidal neurons. Hindawi Publishing Corporation 2016 2016-10-30 /pmc/articles/PMC5107220/ /pubmed/27872762 http://dx.doi.org/10.1155/2016/4827268 Text en Copyright © 2016 Dasiel O. Borroto-Escuela et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review Article
Borroto-Escuela, Dasiel O.
Wydra, Karolina
Pintsuk, Julia
Narvaez, Manuel
Corrales, Fidel
Zaniewska, Magdalena
Agnati, Luigi F.
Franco, Rafael
Tanganelli, Sergio
Ferraro, Luca
Filip, Malgorzata
Fuxe, Kjell
Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title_full Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title_fullStr Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title_full_unstemmed Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title_short Understanding the Functional Plasticity in Neural Networks of the Basal Ganglia in Cocaine Use Disorder: A Role for Allosteric Receptor-Receptor Interactions in A2A-D2 Heteroreceptor Complexes
title_sort understanding the functional plasticity in neural networks of the basal ganglia in cocaine use disorder: a role for allosteric receptor-receptor interactions in a2a-d2 heteroreceptor complexes
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5107220/
https://www.ncbi.nlm.nih.gov/pubmed/27872762
http://dx.doi.org/10.1155/2016/4827268
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