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Design, Synthesis, and Structure-Activity Relationships Study of N-Pyrimidyl/Pyridyl-2-thiazolamine Analogues as Novel Positive Allosteric Modulators of M Muscarinic Acetylcholine Receptor. | LitMetric

AI Article Synopsis

  • The M muscarinic acetylcholine receptor (mAChR) is important for mediating acetylcholine's effects in both peripheral and central nervous systems, but understanding its functions has been limited by the lack of specific agonists and positive allosteric modulators (PAMs).
  • Through a structured activity relationship (SAR) study of a thiazole derivative, researchers discovered new N-pyrimidyl/pyridyl-2-thiazolamine analogues that showed unique conformational characteristics essential for pharmacological activity through sulfur-nitrogen nonbonding interactions.
  • Among these analogues, compound 3g demonstrated strong PAM activity with excellent subtype selectivity and positive pharmacological effects on

Article Abstract

The M muscarinic acetylcholine receptor (mAChR) plays an essential pharmacological role in mediating a broad range of actions of acetylcholine (ACh) released throughout the periphery and central nerve system (CNS). Nevertheless, its agonistic functions remain unclear due to the lack of available subtype-selective agonists or positive allosteric modulators (PAMs). In the course of our extended structure-activity relationships (SARs) study on 2-acylaminothiazole derivative 1, a previously reported PAM of the M mAChR, we successfully identified N-pyrimidyl/pyridyl-2-thiazolamine analogues as new scaffolds. The SARs study was rationalized using conformational analyses based on intramolecular interactions. A comprehensive study of a series of analogues described in this paper suggests that a unique sulfur-nitrogen nonbonding interaction in the N-pyrimidyl/pyridyl-2-thiazolamine moiety enable conformations that are essential for activity. Further, a SARs study around the N-pyrimidyl/pyridyl-2-thiazolamine core culminated in the discovery of compound 3g, which showed potent in vitro PAM activity for the M mAChR with excellent subtype selectivity. Compound 3g also showed a distinct pharmacological effect on isolated smooth muscle tissue from rat bladder and favorable pharmacokinetics profiles, suggesting its potential as a chemical tool for probing the M mAChR in further research.

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http://dx.doi.org/10.1248/cpb.c20-00877DOI Listing

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