μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.

Since their discovery, miRNAs have emerged as a promising therapeutical approach in the treatment of several diseases, as demonstrated by miR-212 and its relation to addiction. Here we prove that the miR-212/132 cluster can be regulated by morphine, through the activation of mu opioid receptor (Oprm...

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Main Authors: Adrian Garcia-Concejo, Ada Jimenez-Gonzalez, Raquel E Rodríguez
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4933400?pdf=render
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spelling doaj-1f64343f43b14c06bef4c51e96d556b12020-11-24T21:47:47ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01117e015780610.1371/journal.pone.0157806μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.Adrian Garcia-ConcejoAda Jimenez-GonzalezRaquel E RodríguezSince their discovery, miRNAs have emerged as a promising therapeutical approach in the treatment of several diseases, as demonstrated by miR-212 and its relation to addiction. Here we prove that the miR-212/132 cluster can be regulated by morphine, through the activation of mu opioid receptor (Oprm1). The molecular pathways triggered after morphine administration also induce changes in the levels of expression of oprm1. In addition, miR-212/132 cluster is actively repressing the expression of mu opioid receptor by targeting a sequence in the 3' UTR of its mRNA. These findings suggest that this cluster is closely related to opioid signaling, and function as a post-transcriptional regulator, modulating morphine response in a dose dependent manner. The regulation of miR-212/132 cluster expression is mediated by MAP kinase pathway, CaMKII-CaMKIV and PKA, through the phosphorylation of CREB. Moreover, the regulation of both oprm1 and of the cluster promoter is mediated by MeCP2, acting as a transcriptional repressor on methylated DNA after prolonged morphine administration. This mechanism explains the molecular signaling triggered by morphine as well as the regulation of the expression of the mu opioid receptor mediated by morphine and the implication of miR-212/132 in these processes.http://europepmc.org/articles/PMC4933400?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Adrian Garcia-Concejo
Ada Jimenez-Gonzalez
Raquel E Rodríguez
spellingShingle Adrian Garcia-Concejo
Ada Jimenez-Gonzalez
Raquel E Rodríguez
μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
PLoS ONE
author_facet Adrian Garcia-Concejo
Ada Jimenez-Gonzalez
Raquel E Rodríguez
author_sort Adrian Garcia-Concejo
title μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
title_short μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
title_full μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
title_fullStr μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
title_full_unstemmed μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.
title_sort μ opioid receptor expression after morphine administration is regulated by mir-212/132 cluster.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Since their discovery, miRNAs have emerged as a promising therapeutical approach in the treatment of several diseases, as demonstrated by miR-212 and its relation to addiction. Here we prove that the miR-212/132 cluster can be regulated by morphine, through the activation of mu opioid receptor (Oprm1). The molecular pathways triggered after morphine administration also induce changes in the levels of expression of oprm1. In addition, miR-212/132 cluster is actively repressing the expression of mu opioid receptor by targeting a sequence in the 3' UTR of its mRNA. These findings suggest that this cluster is closely related to opioid signaling, and function as a post-transcriptional regulator, modulating morphine response in a dose dependent manner. The regulation of miR-212/132 cluster expression is mediated by MAP kinase pathway, CaMKII-CaMKIV and PKA, through the phosphorylation of CREB. Moreover, the regulation of both oprm1 and of the cluster promoter is mediated by MeCP2, acting as a transcriptional repressor on methylated DNA after prolonged morphine administration. This mechanism explains the molecular signaling triggered by morphine as well as the regulation of the expression of the mu opioid receptor mediated by morphine and the implication of miR-212/132 in these processes.
url http://europepmc.org/articles/PMC4933400?pdf=render
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