P-2 purinergic receptor agonists enhance cAMP production in Madin-Darby canine kidney epithelial cells via an autocrine paracrine mechanism

被引:66
作者
Post, SR [1 ]
Jacobson, JP [1 ]
Insel, PA [1 ]
机构
[1] UNIV CALIF SAN DIEGO, DEPT PHARMACOL, LA JOLLA, CA 92093 USA
关键词
D O I
10.1074/jbc.271.4.2029
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
Mechanisms of cross-talk between different classes of signaling molecules are inadequately understood, We have used clonal Madin-Darby canine kidney (MDCK-D-1) epithelial cells as a model system to investigate the effects of extracellular nucleotides (e.g. ATP, UTP), which promote increase in activity of several phospholipases, on cAMP production, In contrast to observations in some other cell systems, ATP and UTP, acting via P-2 purinergic receptors, stimulated cAMP production in MDCK-D-1 cells, At maximally effective concentrations, ATP and UTP were not additive with the beta-adrenergic receptor agonist isoproterenol, but were synergistic with forskolin in increasing cAMP production, indicating that G(alpha s) is activated by these nucleotides, Additionally, we found that (a) nucleotide-induced increases in cAMP were blocked by indomethacin, a cyclooxygenase inhibitor, (b) arachidonic acid increased cellular cAMP levels in an indomethacin sensitive fashion, and (c) PGE(2), the major metabolite of arachidonic acid, stimulated cAMP formation, Overall, our results suggest a mechanism by which extracellular nucleotides stimulate release of arachidonic acid which is metabolized to PGE(2) which, in turn, acts in an autocrine/paracrine fashion via prostaglandin receptors to activate G(alpha s) and increase cAMP, Based on the ability of extracellular nucleotides to stimulate the formation and release of prostaglandins in MDCK-D-1 epithelial and other cells, we hypothesize that receptor-mediated prostaglandin release may be a general mechanism that regulates cAMP formation in many types of cells.
引用
收藏
页码:2029 / 2032
页数:4
相关论文
共 49 条
[1]  
ALLSUP DJ, 1990, MOL PHARMACOL, V38, P84
[2]  
BALBOA MA, 1994, J BIOL CHEM, V269, P10511
[3]   G-PROTEIN-COUPLED P-2 PURINOCEPTORS - FROM MOLECULAR-BIOLOGY TO FUNCTIONAL-RESPONSES [J].
BOARDER, MR ;
WEISMAN, GA ;
TURNER, JT ;
WILKINSON, GF .
TRENDS IN PHARMACOLOGICAL SCIENCES, 1995, 16 (04) :133-139
[4]  
BOYER JL, 1993, J PHARMACOL EXP THER, V267, P1140
[5]  
BOYER JL, 1989, J BIOL CHEM, V264, P884
[6]   IS THERE A BASIS FOR DISTINGUISHING 2 TYPES OF P2-PURINOCEPTOR [J].
BURNSTOCK, G ;
KENNEDY, C .
GENERAL PHARMACOLOGY, 1985, 16 (05) :433-440
[7]   PHORBOL ESTER STIMULATION OF THE TYPE-I AND TYPE-III ADENYLYL CYCLASES IN WHOLE CELLS [J].
CHOI, EJ ;
WONG, ST ;
DITTMAN, AH ;
STORM, DR .
BIOCHEMISTRY, 1993, 32 (08) :1891-1894
[8]   ADENYLYL CYCLASES AND THE INTERACTION BETWEEN CALCIUM AND CAMP SIGNALING [J].
COOPER, DMF ;
MONS, N ;
KARPEN, JW .
NATURE, 1995, 374 (6521) :421-424
[9]  
COTE S, 1993, AM J PHYSIOL, V264, pH1498, DOI 10.1152/ajpheart.1993.264.5.H1498
[10]  
DARFLER FJ, 1982, J BIOL CHEM, V257, P1901