A GENERAL ROLE FOR ADAPTATIONS IN G-PROTEINS AND THE CYCLIC-AMP SYSTEM IN MEDIATING THE CHRONIC ACTIONS OF MORPHINE AND COCAINE ON NEURONAL FUNCTION

被引:468
作者
TERWILLIGER, RZ
BEITNERJOHNSON, D
SEVARINO, KA
CRAIN, SM
NESTLER, EJ
机构
[1] YALE UNIV,SCH MED,DEPT PSYCHIAT,MOLEC PSYCHIAT LAB,NEW HAVEN,CT 06510
[2] YALE UNIV,SCH MED,DEPT PHARMACOL,MOLEC PSYCHIAT LAB,NEW HAVEN,CT 06510
[3] YALE UNIV,CONNECTICUT MENTAL HLTH CTR,NEW HAVEN,CT 06520
[4] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT NEUROSCI,BRONX,NY 10461
关键词
OPIATE TOLERANCE AND DEPENDENCE; COCAINE ADDICTION; LOCUS CERULEUS; DORSAL ROOT GANGLION; NUCLEUS ACCUMBENS; AMYGDALA; G-PROTEIN; ADENYLATE CYCLASE; CYCLIC AMP-DEPENDENT PROTEIN KINASE;
D O I
10.1016/0006-8993(91)91111-D
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Previous studies have shown that chronic morphine increases levels of the G-protein subunits G(i-alpha) and G(o-alpha), adenylate cyclase, cyclic AMP-dependent protein kinase, and certain phosphoproteins in the rat locus coeruleus, but not in several other brain regions studied, and that chronic morphine decreases levels of G(i-alpha) and increases levels of adenylate cyclase in dorsal root ganglion/spinal cord (DRG-SC) co-cultures. These findings led us to survey the effects of chronic morphine on the G-protein/cyclic AMP system in a large number of brain regions to determine how widespread such regulation might be. We found that while most regions showed no regulation in response to chronic morphine, nucleus accumbens (NAc) and amygdala did show increases in adenylate cyclase and cyclic AMP-dependent protein kinase activity, and thalamus showed an increase in cyclic AMP-dependent protein kinase activity only. An increase in cyclic AMP-dependent protein kinase activity was also observed in DRG-SC co-cultures. Morphine regulation of G-proteins was variable, with decreased levels of G(i-alpha) seen in the NAc, increased levels of G(i-alpha) and G(o-alpha) in amygdala, and no change in thalamus or the other brain regions studied. Interestingly, chronic treatment of rats with cocaine, but not with several non-abused drugs, produced similar changes compared to morphine in G-proteins, adenylate cyclase, and cyclic AMP-dependent protein kinase in the NAc, but not in the other brain regions studied. These results indicate that regulation of the G-protein/cyclic AMP system represents a mechanism by which a number of opiate-sensitive neurons adapt to chronic morphine and thereby develop aspects of opiate tolerance and/or dependence. The findings that chronic morphine and cocaine produce similar adaptations in the NAc, a brain region important for the reinforcing actions of many types of abused substances, suggest further that common mechanisms may underlie psychological aspects of drug addiction mediated by this brain region.
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收藏
页码:100 / 110
页数:11
相关论文
共 70 条
[1]   TOLERANCE OF LOCUS COERULEUS NEURONS TO MORPHINE AND SUPPRESSION OF WITHDRAWAL RESPONSE BY CLONIDINE [J].
AGHAJANIAN, GK .
NATURE, 1978, 276 (5684) :186-188
[2]  
AGHAJANIAN GK, 1987, NEUROPHARMACOLOGY, V26, P789
[3]  
ANDRADE R, 1985, J NEUROSCI, V5, P2359
[4]   MORPHINE-TOLERANCE AND DEPENDENCE IN THE LOCUS COERULEUS - SINGLE CELL STUDIES IN BRAIN-SLICES [J].
ANDRADE, R ;
VANDERMAELEN, CP ;
AGHAJANIAN, GK .
EUROPEAN JOURNAL OF PHARMACOLOGY, 1983, 91 (2-3) :161-169
[5]   KAPPA-OPIATE AGONISTS INHIBIT ADENYLATE-CYCLASE AND PRODUCE HETEROLOGOUS DESENSITIZATION IN RAT SPINAL-CORD [J].
ATTALI, B ;
SAYA, D ;
VOGEL, Z .
JOURNAL OF NEUROCHEMISTRY, 1989, 52 (02) :360-369
[6]   LONG-TERM OPIATE EXPOSURE LEADS TO REDUCTION OF THE ALPHA-I-1 SUBUNIT OF GTP-BINDING PROTEINS [J].
ATTALI, B ;
VOGEL, Z .
JOURNAL OF NEUROCHEMISTRY, 1989, 53 (05) :1636-1639
[7]   CHARACTERIZATION OF KAPPA-OPIATE RECEPTORS IN RAT SPINAL-CORD DORSAL-ROOT GANGLION COCULTURES AND THEIR REGULATION BY CHRONIC OPIATE TREATMENT [J].
ATTALI, B ;
VOGEL, Z .
BRAIN RESEARCH, 1990, 517 (1-2) :182-188
[8]  
BEITNER D B, 1990, Society for Neuroscience Abstracts, V16, P927
[9]   ANATOMICALLY DISTINCT OPIATE RECEPTOR FIELDS MEDIATE REWARD AND PHYSICAL-DEPENDENCE [J].
BOZARTH, MA ;
WISE, RA .
SCIENCE, 1984, 224 (4648) :516-517
[10]   MATURATION OF OPIOID SENSITIVITY OF FETAL MOUSE DORSAL-ROOT GANGLION NEURON PERIKARYA IN ORGANOTYPIC CULTURES - REGULATION BY SPINAL-CORD [J].
CHALAZONITIS, A ;
CRAIN, SM .
NEUROSCIENCE, 1986, 17 (04) :1181-1198