变构调节
化学
功能选择性
变构调节剂
药理学
G蛋白偶联受体
受体
药物发现
阿片受体
信号转导
腺苷酸环化酶
类阿片
生物化学
生物
作者
Neil T. Burford,Kathryn E. Livingston,Meritxell Canals,Molly R. Ryan,Lauren Budenholzer,Ying Han,Yi Shang,John J. Herbst,Jonathan C. O’Connell,Martyn Banks,Litao Zhang,Marta Filizola,Daniel L. Bassoni,Tom S. Wehrman,Arthur Christopoulos,John R. Traynor,Samuel W. Gerritz,Andrew Alt
标识
DOI:10.1021/acs.jmedchem.5b00007
摘要
Allosteric modulators of G protein-coupled receptors (GPCRs) have a number of potential advantages compared to agonists or antagonists that bind to the orthosteric site of the receptor. These include the potential for receptor selectivity, maintenance of the temporal and spatial fidelity of signaling in vivo, the ceiling effect of the allosteric cooperativity which may prevent overdose issues, and engendering bias by differentially modulating distinct signaling pathways. Here we describe the discovery, synthesis, and molecular pharmacology of δ-opioid receptor-selective positive allosteric modulators (δ PAMs). These δ PAMs increase the affinity and/or efficacy of the orthosteric agonists leu-enkephalin, SNC80 and TAN67, as measured by receptor binding, G protein activation, β-arrestin recruitment, adenylyl cyclase inhibition, and extracellular signal-regulated kinases (ERK) activation. As such, these compounds are useful pharmacological tools to probe the molecular pharmacology of the δ receptor and to explore the therapeutic potential of δ PAMs in diseases such as chronic pain and depression.
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