大麻素
大麻素受体
内大麻素系统
药理学
生物
大麻素受体2型
受体
百日咳毒素
G蛋白
化学
神经科学
细胞生物学
生物化学
兴奋剂
作者
Lisa A. Matsuda,Stephen J. Lolait,Michael Brownstein,Alice C. Young,Tom I. Bonner
出处
期刊:Nature
[Nature Portfolio]
日期:1990-08-09
卷期号:346 (6284): 561-564
被引量:5015
摘要
Marijuana and many of its constituent cannabinoids influence the central nervous system (CNS) in a complex and dose-dependent manner. Although CNS depression and analgesia are well documented effects of the cannabinoids, the mechanisms responsible for these and other cannabinoid-induced effects are not so far known. The hydrophobic nature of these substances has suggested that cannabinoids resemble anaesthetic agents in their action, that is, they nonspecifically disrupt cellular membranes. Recent evidence, however, has supported a mechanism involving a G protein-coupled receptor found in brain and neural cell lines, and which inhibits adenylate cyclase activity in a dose-dependent, stereoselective and pertussis toxin-sensitive manner. Also, the receptor is more responsive to psychoactive cannabinoids than to non-psychoactive cannabinoids. Here we report the cloning and expression of a complementary DNA that encodes a G protein-coupled receptor with all of these properties. Its messenger RNA is found in cell lines and regions of the brain that have cannabinoid receptors. These findings suggest that this protein is involved in cannabinoid-induced CNS effects (including alterations in mood and cognition) experienced by users of marijuana.
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