Target intelligence / Profile preview

Mu-opioid receptor, Kappa-opioid receptor, Delta-opioid receptor (MOR, KOR, DOR)

Target
MOR, KOR, DOR
Molecular classification
G protein-coupled receptor, Receptor
01

Overview

The μ-opioid receptor (MOR), κ-opioid receptor (KOR), and δ-opioid receptor (DOR) are members of the opioid receptor family, a subfamily of G protein-coupled receptors (GPCRs) that mediate the action of endogenous peptides (endorphins, enkephalins, dynorphins) and exogenous opioids (morphine, fentanyl, etc.). They are widely distributed in the central and peripheral nervous system, particularly in pain pathways, and play key roles in analgesia, addiction, mood, respiratory regulation, and various autonomic processes. MOR is chiefly responsible for the rewarding and addictive effects as well as the potent analgesic and depressant properties of clinically used opioids; KOR is associated with analgesia, diuresis, and dysphoria but is often less reinforcing; DOR has roles in analgesia and emotional responses and is experimentally linked to mood modulation and chronic pain with a possibly reduced side effect profile. All three receptors mediate their effects mainly by coupling to Gi/o proteins, resulting in inhibition of adenylyl cyclase, decreased cellular excitability, and neurotransmitter release. Drugs targeting these receptors are mainstays in the management of pain, opioid dependence, and overdose but carry significant safety and abuse challenges. Recent therapeutic strategies focus on developing receptor- and pathway-selective ligands to reduce adverse outcomes.

Other names
μ-opioid receptor (MOR)kappa-opioid receptor (KOR)delta-opioid receptor (DOR)opioid receptors
02

Mechanism of action

Agonists (activate receptor to mimic endogenous opioid peptides and produce analgesia and other effects); Antagonists (block receptor activity, used in overdose reversal and addiction treatment); Partial agonists (produce submaximal activation, useful in opioid dependence therapy); Biased agonists (preferentially activate certain signaling pathways to separate therapeutic from adverse effects)

03

Biological functions

Signal transductionAnalgesia (pain inhibition)Modulation of mood, reward, and stress responsesRegulation of gastrointestinal motilityModulation of diuresis and respiratory function
04

Disease associations

PainAddictionMood disorders (depression, anxiety)InflammationNeurodegenerative disease (role in neuroprotection and degeneration is an area of study)
05

Safety considerations

Addiction and dependence (especially with MOR)Respiratory depression (mainly MOR agonists)Constipation and gastrointestinal dysfunctionTolerance and withdrawalDysphoria (primarily KOR agonists)Psychiatric effects (depression, anxiety, mood disturbances)Abuse potential (high for MOR; lower for KOR/DOR-targeting drugs)
06

Interacting drugs

Morphine

12 more in the full profile.

07

Biomarkers

Receptor expression levels in tissues (imaging with radiolabeled ligands)Genetic variants (such as OPRM1 A118G for MOR)Circulating endogenous opioids (beta-endorphin, enkephalins, dynorphins)

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