功能选择性
痛苦
背景(考古学)
变构调节
变构调节剂
药理学
化学
药物作用
受体
体内
药物发现
G蛋白偶联受体
作用机理
兴奋剂
神经科学
药品
生物
体外
生物化学
法学
古生物学
生物技术
政治
政治学
作者
Wiebke Kirsten Seemann,Daniela Wenzel,R Schrage,Justine Etscheid,Theresa Bödefeld,Anna Bartol,Mareille Warnken,Philipp Sasse,Jessica Klöckner,Ulrike Holzgrabe,Marco De Amici,Eberhard Schlicker,Kurt Racké,Evi Kostenis,Rainer Meyer,Bernd K. Fleischmann,Klaus Mohr
标识
DOI:10.1124/jpet.116.237149
摘要
Drug discovery strives for selective ligands to achieve targeted modulation of tissue function. Here we introduce engineered context-sensitive agonism as a postreceptor mechanism for tissue-selective drug action through a G protein-coupled receptor. Acetylcholine M2-receptor activation is known to mediate, among other actions, potentially dangerous slowing of the heart rate. This unwanted side effect is one of the main reasons that limit clinical application of muscarinic agonists. Herein we show that dualsteric (orthosteric/allosteric) agonists induce less cardiac depression ex vivo and in vivo than conventional full agonists. Exploration of the underlying mechanism in living cells employing cellular dynamic mass redistribution identified context-sensitive agonism of these dualsteric agonists. They translate elevation of intracellular cAMP into a switch from full to partial agonism. Designed context-sensitive agonism opens an avenue toward postreceptor pharmacologic selectivity, which even works in target tissues operated by the same subtype of pharmacologic receptor.
科研通智能强力驱动
Strongly Powered by AbleSci AI