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Muscarinic acetylcholine receptor M2, M3, and M4 (mAChR M2-M4) (mAChR M2-M4)

Target
mAChR M2-M4
Molecular classification
G protein-coupled receptor, Receptor
01

Overview

The muscarinic acetylcholine receptors M2, M3, and M4 are a subset of the five muscarinic receptor subtypes (M1–M5) that belong to the G protein-coupled receptor (GPCR) superfamily [1.2.1, 1.3.5]. These receptors are activated by the endogenous neurotransmitter acetylcholine and play diverse roles in both the central and peripheral nervous systems [1.2.3]. The M2 and M4 subtypes are primarily coupled to the Gi/o family of G proteins, which inhibit adenylyl cyclase and decrease intracellular cAMP levels, whereas the M3 subtype is coupled to Gq/11 proteins, leading to the activation of phospholipase C and an increase in intracellular calcium [1.2.3, 1.3.5]. M2 receptors are critical for regulating cardiac function, specifically slowing heart rate, and also act as presynaptic autoreceptors in the brain [1.1.2, 1.4.1]. M3 receptors are widely expressed in smooth muscles and exocrine glands, where they mediate contraction (e.g., in the airways and bladder) and secretion (e.g., saliva and gastric acid) [1.3.1, 1.4.3]. M4 receptors are predominantly located in the central nervous system, particularly in the striatum, where they modulate dopaminergic activity and are involved in motor control and cognitive processes [1.3.3, 1.4.1]. These receptors are major therapeutic targets for a variety of conditions, including respiratory diseases like COPD (M3 antagonists), overactive bladder (M3 antagonists), and neuropsychiatric disorders like schizophrenia (M4 agonists) [1.3.1, 1.3.3].

Other names
CHRM2CHRM3CHRM4Cholinergic receptor muscarinic 2Cholinergic receptor muscarinic 3Cholinergic receptor muscarinic 4M2 muscarinic receptorM3 muscarinic receptorM4 muscarinic receptormAChR M2mAChR M3mAChR M4
02

Mechanism of action

Agonism, Antagonism, and Allosteric modulation of G protein-coupled signaling pathways. M2 and M4 receptors signal through Gi/o proteins to inhibit adenylyl cyclase and reduce cAMP, while M3 receptors signal through Gq/11 proteins to activate phospholipase C and increase intracellular calcium [1.2.3, 1.3.5].

03

Biological functions

Signal transductionNeurotransmissionSmooth muscle contractionGlandular secretionHeart rate regulationCognitionNociception
04

Disease associations

Alzheimer's diseaseSchizophreniaChronic obstructive pulmonary disease (COPD)Overactive bladderParkinson's diseaseSjögren's syndromeAsthma
05

Safety considerations

Tachycardia (M2 antagonism)Bradycardia (M2 agonism)Dry mouth (M3 antagonism)Constipation (M3 antagonism)Blurred vision (M3 antagonism)Urinary retention (M3 antagonism)Cognitive impairment (CNS M2/M4)
06

Interacting drugs

Atropine

10 more in the full profile.

07

Biomarkers

Salivary flow rateHeart rate variabilityPET imaging ligands (e.g., [11C]NMPB)Pupil diameter (miosis/mydriasis)

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