MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.

The mu-opioid receptor (MOR) is the G-protein coupled receptor primarily responsible for mediating the analgesic and rewarding properties of opioid agonist drugs such as morphine, fentanyl, and heroin. We have utilized a combination of traditional and modified membrane yeast two-hybrid screening met...

Full description

Bibliographic Details
Main Authors: Jessica Petko, Stephanie Justice-Bitner, Jay Jin, Victoria Wong, Saranya Kittanakom, Thomas N Ferraro, Igor Stagljar, Robert Levenson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3695902?pdf=render
id doaj-f4e918128ad248b9b2701d7330a12b3a
record_format Article
spelling doaj-f4e918128ad248b9b2701d7330a12b3a2020-11-25T01:02:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6760810.1371/journal.pone.0067608MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.Jessica PetkoStephanie Justice-BitnerJay JinVictoria WongSaranya KittanakomThomas N FerraroIgor StagljarRobert LevensonThe mu-opioid receptor (MOR) is the G-protein coupled receptor primarily responsible for mediating the analgesic and rewarding properties of opioid agonist drugs such as morphine, fentanyl, and heroin. We have utilized a combination of traditional and modified membrane yeast two-hybrid screening methods to identify a cohort of novel MOR interacting proteins (MORIPs). The interaction between the MOR and a subset of MORIPs was validated in pulldown, co-immunoprecipitation, and co-localization studies using HEK293 cells stably expressing the MOR as well as rodent brain. Additionally, a subset of MORIPs was found capable of interaction with the delta and kappa opioid receptors, suggesting that they may represent general opioid receptor interacting proteins (ORIPS). Expression of several MORIPs was altered in specific mouse brain regions after chronic treatment with morphine, suggesting that these proteins may play a role in response to opioid agonist drugs. Based on the known function of these newly identified MORIPs, the interactions forming the MOR signalplex are hypothesized to be important for MOR signaling and intracellular trafficking. Understanding the molecular complexity of MOR/MORIP interactions provides a conceptual framework for defining the cellular mechanisms of MOR signaling in brain and may be critical for determining the physiological basis of opioid tolerance and addiction.http://europepmc.org/articles/PMC3695902?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jessica Petko
Stephanie Justice-Bitner
Jay Jin
Victoria Wong
Saranya Kittanakom
Thomas N Ferraro
Igor Stagljar
Robert Levenson
spellingShingle Jessica Petko
Stephanie Justice-Bitner
Jay Jin
Victoria Wong
Saranya Kittanakom
Thomas N Ferraro
Igor Stagljar
Robert Levenson
MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
PLoS ONE
author_facet Jessica Petko
Stephanie Justice-Bitner
Jay Jin
Victoria Wong
Saranya Kittanakom
Thomas N Ferraro
Igor Stagljar
Robert Levenson
author_sort Jessica Petko
title MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
title_short MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
title_full MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
title_fullStr MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
title_full_unstemmed MOR is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
title_sort mor is not enough: identification of novel mu-opioid receptor interacting proteins using traditional and modified membrane yeast two-hybrid screens.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The mu-opioid receptor (MOR) is the G-protein coupled receptor primarily responsible for mediating the analgesic and rewarding properties of opioid agonist drugs such as morphine, fentanyl, and heroin. We have utilized a combination of traditional and modified membrane yeast two-hybrid screening methods to identify a cohort of novel MOR interacting proteins (MORIPs). The interaction between the MOR and a subset of MORIPs was validated in pulldown, co-immunoprecipitation, and co-localization studies using HEK293 cells stably expressing the MOR as well as rodent brain. Additionally, a subset of MORIPs was found capable of interaction with the delta and kappa opioid receptors, suggesting that they may represent general opioid receptor interacting proteins (ORIPS). Expression of several MORIPs was altered in specific mouse brain regions after chronic treatment with morphine, suggesting that these proteins may play a role in response to opioid agonist drugs. Based on the known function of these newly identified MORIPs, the interactions forming the MOR signalplex are hypothesized to be important for MOR signaling and intracellular trafficking. Understanding the molecular complexity of MOR/MORIP interactions provides a conceptual framework for defining the cellular mechanisms of MOR signaling in brain and may be critical for determining the physiological basis of opioid tolerance and addiction.
url http://europepmc.org/articles/PMC3695902?pdf=render
work_keys_str_mv AT jessicapetko morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT stephaniejusticebitner morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT jayjin morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT victoriawong morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT saranyakittanakom morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT thomasnferraro morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT igorstagljar morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
AT robertlevenson morisnotenoughidentificationofnovelmuopioidreceptorinteractingproteinsusingtraditionalandmodifiedmembraneyeasttwohybridscreens
_version_ 1725203998001070080