AI Article Synopsis

  • ERKs are activated by opioids like morphine, playing a key role in addiction, with significant changes in their activity linked to opioid actions.
  • A 5-minute morphine treatment caused a rapid increase in ERK1/2 activity in cells with the mu-opioid receptor, while prolonged use led to a slight increase in activity, and withdrawal reduced ERK phosphorylation.
  • The study used RNA interference to silence transcription factors CREB and Elk-1, which revealed that these factors are important in regulating ERK activity during opioid treatment and withdrawal responses.

Article Abstract

Extracellular signal-regulated kinases (ERKs) have been shown to be activated by opioids and functionally linked to addiction. Morphine-associated changes in ERK activity seem to be the characteristic features of opioid action. In this study, we observed a rapid and severe increase in ERK1/2 activity after a 5 min morphine treatment of HEK-MOR cells (transfected with the rat mu-opioid receptor MOR1) expressing mu-opioid receptor. Cellular adaptations to chronic (72 h) morphine treatment were manifested by a slight and sustained increase in ERK1/2 activity. Withdrawal caused by an opioid receptor antagonist - naloxone - attenuated phosphorylation of ERK1/2. Little information is available on the precise mechanism of ERK activity regulation. Using RNA interference technology, we generated stably transfected cells with silenced expression of cAMP-responsive element binding factor (CREB) and Ets-like protein-1 (Elk-1) transcription factors, which are known targets for activated ERK1/2. In these cells, ERK1/2 activity regulation was altered. Silencing of CREB or Elk-1 significantly increased ERK activation observed after 5 min of morphine stimulation. The initial level of activated ERKs in these cells was also augmented. Moreover, the cellular response to withdrawal signals and chronic opioid treatment was diminished. These differences suggest that both CREB-dependent and Elk-1-dependent transcription contribute to the expression of proteins regulating morphine-induced ERK activity (particular phosphatases, upstream kinases or their activatory proteins).

Download full-text PDF

Source
http://dx.doi.org/10.1111/j.1742-4658.2008.06531.xDOI Listing

Publication Analysis

Top Keywords

erk activity
12
erk1/2 activity
12
chronic morphine
8
camp-responsive element
8
element binding
8
binding factor
8
ets-like protein-1
8
elk-1-dependent transcription
8
increase erk1/2
8
min morphine
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!