Relevance of Mu-Opioid Receptor Splice Variants and Plasticity of Their Signaling Sequelae to Opioid Analgesic

Sumita Chakrabarti1, Nai-Jiang Liu1, Alan R Gintzler2

  • 1Department Obstetrics and Gynecology, SUNY Downstate Health Sciences University, 450 Clarkson Ave, Brooklyn, NY, 11203, USA.

Insights

Opioid tolerance, a major challenge in pain management, arises from complex signaling pathway adaptations, not just receptor changes. Understanding these molecular mechanisms is key to developing new pain relief strategies.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Molecular Biology

Background:

  • Opioid dose escalation for pain control contributes to the opioid abuse epidemic.
  • Understanding opioid tolerance mechanisms is crucial for developing safer analgesics.
  • Traditional explanations like receptor downregulation do not fully account for tolerance.

Purpose of the Study:

  • To investigate alternative biochemical mechanisms underlying opioid analgesic tolerance.
  • To explore the role of mu-opioid receptor (MOR) signaling plasticity in tolerance.
  • To identify novel molecular targets for mitigating opioid tolerance.

Main Methods:

  • Analysis of MOR signaling pathways beyond canonical desensitization and downregulation.
  • Investigating MOR splice variants and their G protein coupling.
  • Assessing changes in adenylyl cyclase signaling upon chronic morphine exposure.

Main Results:

  • Opioid tolerance is linked to plasticity in upstream/downstream signaling components and alternative pathways.
  • Chronic morphine upregulates specific MOR variants (MOR-1B2, MOR-1C1) and alters their C-terminal phosphorylation.
  • MOR variant alterations shift G protein coupling from inhibitory (Gi/Go) to stimulatory (Gs) adenylyl cyclase signaling.

Conclusions:

  • MOR splice variant diversity and altered signaling are key drivers of opioid analgesic tolerance.
  • Region- and cell-specific adaptations in MOR variants may underlie differential tolerance and dependence.
  • Targeting MOR variant signaling offers a potential strategy to minimize opioid tolerance.

Related Concept Videos

Analgesia and Pain Management01:25

Analgesia and Pain Management

Pain is critical to various clinical pathologies, provoking an urgent need for effective management. Pain, whether acute or chronic, is a complex neurochemical process. Its alleviation depends on the type, with nonopioid analgesics effective for mild to moderate pain, such as musculoskeletal or inflammatory pain, while neuropathic pain responds best to anticonvulsants, tricyclic antidepressants, or serotonin/norepinephrine reuptake inhibitors. For severe acute or chronic pain, opioids may be...
1.3K
Opioid Receptors: Overview01:22

Opioid Receptors: Overview

Opioid receptors, including the mu (μ, MOR), delta (δ, DOR), and kappa (κ, KOR) types, belong to the rhodopsin family of G protein-coupled receptors. These receptors are located throughout the central and peripheral nervous systems and in non-neuronal tissues such as macrophages and astrocytes. Opioid receptor ligands can be categorized into agonists or antagonists. Highly selective agonists include [d-Ala2, MePhe4, Gly(ol)5]-enkephalin or DAMGO for MOR, [D-Pen2,...
3.5K
Opioid Analgesics: Synthetic and Semisynthetic Opioids01:15

Opioid Analgesics: Synthetic and Semisynthetic Opioids

Synthetic and semisynthetic opioids are pivotal in pain management and tackling opioid addiction. Semisynthetic opioids, including morphinans (morphine derivatives), oxycodone, oxymorphone, hydrocodone, and hydromorphone, have improved pharmacokinetic profiles compared to morphine. Additionally, heroin and 6-MAM (6-Monoacetylmorphine) show better CNS penetration than morphine due to heightened lipid solubility. Hydromorphone, a potent opioid, undergoes hepatic metabolism to form the active...
768
Opioid Analgesics: Morphine and Other Natural Cogeners01:20

Opioid Analgesics: Morphine and Other Natural Cogeners

Opioids are a class of drugs that mimic endogenous opioid peptides and act on opioid receptors, and help in pain relief. These compounds are classified as natural, synthetic, or semi-synthetic. Natural opioids, like morphine, codeine, and thebaine, are derived from the opium poppy plant (Papaver somniferum or Papaver album) and are termed opiates. Synthetic opioids are artificial, while semi-synthetic opioids combine natural and synthetic compounds. Morphine, a prototypical opioid, possesses a...
661
Drug Abuse and Addiction: Pharmacological Phenomena01:15

Drug Abuse and Addiction: Pharmacological Phenomena

Drug dependence, abuse, and addiction are complex phenomena that can precipitate various abnormal states. Physical dependence refers to a state of pharmacological adaptation to a drug. This adaptation often results in tolerance—a reduced response to the drug after repeated administrations. When the drug use is abruptly stopped, withdrawal symptoms occur due to the body's need to readjust from the pharmacologically induced imbalance. However, tolerance and withdrawal symptoms do not...
976
Spare Receptors01:30

Spare Receptors

Some receptors remain unoccupied even when an agonist produces a maximal response. Such empty ones are called spare receptors. In presence of spare receptors the maximum effect of an agonist drug is achieved with fewer than 100% of the receptors being occupied. To determine the presence of spare receptors, scientists often compare the concentration of the drug needed to produce 50% of the maximum effect (EC50) with the concentration of the drug needed to occupy 50% of the receptors (Kd). If the...
4.4K