Biosynthesis, release and degradation of the novel endogenous cannabimimetic metabolite 2-arachidonoylglycerol in mouse neuroblastoma cells

被引:233
作者
Bisogno, T
Sepe, N
Melck, D
Maurelli, S
DePetrocellis, L
DiMarzo, V
机构
[1] CNR,IST CHIM MOL INTERESSE BIOL,I-80072 ARCO,NAPLES,ITALY
[2] CNR,IST CIBERNET,I-80072 ARCO,NAPLES,ITALY
关键词
D O I
10.1042/bj3220671
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The monoacylglycerol 2-arachidonoylglycerol (2-AG) has been recently suggested as a possible endogenous agonist at cannabinoid receptors both in brain and peripheral tissues. Here we report that a widely used model for neuronal cells, mouse N(18)TG(2) neuroblastoma cells, which contain the CB1 cannabinoid receptor, also biosynthesize, release and degrade 2-AG. Stimulation with ionomycin (1-5 mu M) of intact cells prelabelled with [H-3]arachidonic acid ([H-3]AA) led to the formation of high levels of a radioactive component with the same chromatographic behaviour as synthetic standards of 2-AG in TLC and HPLC analyses. The amounts of this metabolite were negligible in unstimulated cells, and greatly decreased in cells stimulated in the presence of the Ca2+-chelating agent EGTA. The purified component was further characterized as 2-AG by: (1) digestion with Rhizopus arrhizus lipase, which yielded radiolabelled AA; (2) gas chromatographic-MS analyses; and (3) TLC analyses on berate-impregnated plates. Approx. 20% of the 2-AG produced by stimulated cells was found to be released into the incubation medium when this contained 0.1% BSA. Subcellular fractions of N,,TG, cells were shown to contain enzymic activity or activities catalysing the hydrolysis of synthetic [H-3]2-AG to [H-3]AA. Cell homogenates were also found to convert synthetic [H-3]sn-1-acyl-2-arachidonoylglycerols (AcAGs) into [H-3]2-AG, suggesting that 2-AG might be derived from AcAG hydrolysis. When compared with ionomycin stimulation, treatment of cells with exogenous phospholipase C, but not with phospholipase D or A(2), led to a much higher formation of 2-AG and AcAGs. However, treatment of cells with phospholipase A(2) 10 min before ionomycin stimulation caused a 2.5-3-fold potentiation of 2-AG and AcAG levels with respect to ionomycin alone, whereas preincubation with the phospholipase C inhibitor neomycin sulphate did not inhibit the effect of ionomycin on 2-AG and AcAG levels. These results suggest that the Ca2+-induced formation of 2-AG proceeds through the intermediacy of AcAGs but not necessarily through phospholipase C activation. By showing for the first time the existence of molecular mechanisms for the inactivation and the Ca2+-dependent biosynthesis and release of 2-AG in neuronal cells, the present paper supports the hypothesis that this cannabimimetic monoacylglycerol might be a physiological neuromodular.
引用
收藏
页码:671 / 677
页数:7
相关论文
共 32 条
[1]   BRADYKININ STIMULATES ARACHIDONIC-ACID RELEASE THROUGH THE SEQUENTIAL ACTIONS OF AN SN-1 DIACYLGLYCEROL LIPASE AND A MONOACYLGLYCEROL LIPASE [J].
ALLEN, AC ;
GAMMON, CM ;
OUSLEY, AH ;
MCCARTHY, KD ;
MORELL, P .
JOURNAL OF NEUROCHEMISTRY, 1992, 58 (03) :1130-1139
[2]   A 2ND MESSENGER ROLE FOR MONOACYLGLYCEROLS IS SUGGESTED BY THEIR ACTIVATING EFFECTS ON THE SODIUM-PUMP [J].
ASKARI, A ;
XIE, ZJ ;
WANG, YH ;
PERIYASAMY, S ;
HUANG, WH .
BIOCHIMICA ET BIOPHYSICA ACTA, 1991, 1069 (01) :127-130
[3]  
De Petrocellis L, 1995, BIOCHEM MOL BIOL INT, V36, P1127
[4]   ANANDAMIDE AMIDOHYDROLASE ACTIVITY IN RAT-BRAIN MICROSOMES - IDENTIFICATION AND PARTIAL CHARACTERIZATION [J].
DESARNAUD, F ;
CADAS, H ;
PIOMELLI, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (11) :6030-6035
[5]   ENZYMATIC-SYNTHESIS AND DEGRADATION OF ANANDAMIDE, A CANNABINOID RECEPTOR AGONIST [J].
DEUTSCH, DG ;
CHIN, SA .
BIOCHEMICAL PHARMACOLOGY, 1993, 46 (05) :791-796
[6]   ISOLATION AND STRUCTURE OF A BRAIN CONSTITUENT THAT BINDS TO THE CANNABINOID RECEPTOR [J].
DEVANE, WA ;
HANUS, L ;
BREUER, A ;
PERTWEE, RG ;
STEVENSON, LA ;
GRIFFIN, G ;
GIBSON, D ;
MANDELBAUM, A ;
ETINGER, A ;
MECHOULAM, R .
SCIENCE, 1992, 258 (5090) :1946-1949
[7]   ENZYMATIC-SYNTHESIS OF ANANDAMIDE, AN ENDOGENOUS LIGAND FOR THE CANNABINOID RECEPTOR, BY BRAIN MEMBRANES [J].
DEVANE, WA ;
AXELROD, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (14) :6698-6701
[8]   NEW DAWN OF CANNABINOID PHARMACOLOGY [J].
DEVANE, WA .
TRENDS IN PHARMACOLOGICAL SCIENCES, 1994, 15 (02) :40-41
[9]   FORMATION AND INACTIVATION OF ENDOGENOUS CANNABINOID ANANDAMIDE IN CENTRAL NEURONS [J].
DIMARZO, V ;
FONTANA, A ;
CADAS, H ;
SCHINELLI, S ;
CIMINO, G ;
SCHWARTZ, JC ;
PIOMELLI, D .
NATURE, 1994, 372 (6507) :686-691
[10]   Biosynthesis of anandamide and related acylethanolamides in mouse J774 macrophages and N-18 neuroblastoma cells [J].
diMarzo, V ;
dePetrocellis, L ;
Sepe, N ;
Buono, A .
BIOCHEMICAL JOURNAL, 1996, 316 :977-984