Cargando…
A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells
Key targets of both the therapeutic and abused properties of opioids are μ-opioid receptors (MORs). Despite years of research investigating the biochemistry and signal transduction pathways associated with MOR activation, we do not fully understand the cellular mechanisms underlying opioid addiction...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9762562/ https://www.ncbi.nlm.nih.gov/pubmed/36534642 http://dx.doi.org/10.1371/journal.pone.0270317 |
_version_ | 1784852887818469376 |
---|---|
author | Mengaziol, Juliet Dunn, Amelia D. Salimando, Gregory Wooldridge, Lisa Crues-Muncunill, Jordi Eacret, Darrell Chen, Chongguang Bland, Kathryn Liu- Chen, Lee-Yuan Ehrlich, Michelle E. Corder, Gregory Blendy, Julie A. |
author_facet | Mengaziol, Juliet Dunn, Amelia D. Salimando, Gregory Wooldridge, Lisa Crues-Muncunill, Jordi Eacret, Darrell Chen, Chongguang Bland, Kathryn Liu- Chen, Lee-Yuan Ehrlich, Michelle E. Corder, Gregory Blendy, Julie A. |
author_sort | Mengaziol, Juliet |
collection | PubMed |
description | Key targets of both the therapeutic and abused properties of opioids are μ-opioid receptors (MORs). Despite years of research investigating the biochemistry and signal transduction pathways associated with MOR activation, we do not fully understand the cellular mechanisms underlying opioid addiction. Given that addictive opioids such as morphine, oxycodone, heroin, and fentanyl all activate MORs, and current therapies such as naloxone and buprenorphine block this activation, the availability of tools to mechanistically investigate opioid-mediated cellular and behavioral phenotypes are necessary. Therefore, we derived, validated, and applied a novel MOR-specific Cre mouse line, inserting a T2A cleavable peptide sequence and the Cre coding sequence into the MOR 3’UTR. Importantly, this line shows specificity and fidelity of MOR expression throughout the brain and with respect to function, there were no differences in behavioral responses to morphine when compared to wild type mice, nor are there any alterations in Oprm1 gene expression or receptor density. To assess Cre recombinase activity, MOR-Cre mice were crossed with the floxed GFP-reporters, Rosa(LSLSun1-sfGFP) or Rosa(LSL-GFP-L10a). The latter allowed for cell type specific RNA sequencing via TRAP (Translating Ribosome Affinity Purification) of striatal MOR+ neurons following opioid withdrawal. The breadth of utility of this new tool will greatly facilitate the study of opioid biology under varying conditions. |
format | Online Article Text |
id | pubmed-9762562 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-97625622022-12-20 A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells Mengaziol, Juliet Dunn, Amelia D. Salimando, Gregory Wooldridge, Lisa Crues-Muncunill, Jordi Eacret, Darrell Chen, Chongguang Bland, Kathryn Liu- Chen, Lee-Yuan Ehrlich, Michelle E. Corder, Gregory Blendy, Julie A. PLoS One Research Article Key targets of both the therapeutic and abused properties of opioids are μ-opioid receptors (MORs). Despite years of research investigating the biochemistry and signal transduction pathways associated with MOR activation, we do not fully understand the cellular mechanisms underlying opioid addiction. Given that addictive opioids such as morphine, oxycodone, heroin, and fentanyl all activate MORs, and current therapies such as naloxone and buprenorphine block this activation, the availability of tools to mechanistically investigate opioid-mediated cellular and behavioral phenotypes are necessary. Therefore, we derived, validated, and applied a novel MOR-specific Cre mouse line, inserting a T2A cleavable peptide sequence and the Cre coding sequence into the MOR 3’UTR. Importantly, this line shows specificity and fidelity of MOR expression throughout the brain and with respect to function, there were no differences in behavioral responses to morphine when compared to wild type mice, nor are there any alterations in Oprm1 gene expression or receptor density. To assess Cre recombinase activity, MOR-Cre mice were crossed with the floxed GFP-reporters, Rosa(LSLSun1-sfGFP) or Rosa(LSL-GFP-L10a). The latter allowed for cell type specific RNA sequencing via TRAP (Translating Ribosome Affinity Purification) of striatal MOR+ neurons following opioid withdrawal. The breadth of utility of this new tool will greatly facilitate the study of opioid biology under varying conditions. Public Library of Science 2022-12-19 /pmc/articles/PMC9762562/ /pubmed/36534642 http://dx.doi.org/10.1371/journal.pone.0270317 Text en © 2022 Mengaziol et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Mengaziol, Juliet Dunn, Amelia D. Salimando, Gregory Wooldridge, Lisa Crues-Muncunill, Jordi Eacret, Darrell Chen, Chongguang Bland, Kathryn Liu- Chen, Lee-Yuan Ehrlich, Michelle E. Corder, Gregory Blendy, Julie A. A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title | A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title_full | A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title_fullStr | A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title_full_unstemmed | A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title_short | A novel Oprm1-Cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
title_sort | novel oprm1-cre mouse maintains endogenous expression, function and enables detailed molecular characterization of μ-opioid receptor cells |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9762562/ https://www.ncbi.nlm.nih.gov/pubmed/36534642 http://dx.doi.org/10.1371/journal.pone.0270317 |
work_keys_str_mv | AT mengazioljuliet anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT dunnameliad anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT salimandogregory anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT wooldridgelisa anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT cruesmuncunilljordi anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT eacretdarrell anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT chenchongguang anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT blandkathryn anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT liuchenleeyuan anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT ehrlichmichellee anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT cordergregory anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT blendyjuliea anoveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT mengazioljuliet noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT dunnameliad noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT salimandogregory noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT wooldridgelisa noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT cruesmuncunilljordi noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT eacretdarrell noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT chenchongguang noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT blandkathryn noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT liuchenleeyuan noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT ehrlichmichellee noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT cordergregory noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells AT blendyjuliea noveloprm1cremousemaintainsendogenousexpressionfunctionandenablesdetailedmolecularcharacterizationofmopioidreceptorcells |