The principal goal of this project is to examine alpha- and beta-adrenergic receptors in two catecholamine-responsive cell lines--Madin Darby Canine Kidney (MDCK) and BC3H-1 muscle cells. These 2 cell types are unique because they each co-express both alpha1-adrenergic and beta2-adrenergic receptors. Data obtained thus far in these systems indicate that the 2 receptors are discrete entities which possess different functional responses, binding properties, and second messengers and which may be independently regulated. Aspects of the receptors that we will examine in the current proposal include interaction of agonists with receptors on intact cells (in which we will test for differences in early events by which the cells """"""""process"""""""" alpha and beta receptors), transmembrane signalling by alpha1-receptors in MDCK cells (in particular, a novel guanine nucleotide binding protein that links alpha1-receptors to cellular response systems and the relationship between phosphoinositide hydrolysis and arachidonic acid release/prostaglandin E2 generation), and cellular and molecular mechanisms that mediate homologous desensitization and a new form of desensitization (""""""""crossed"""""""" desensitization of beta2-adrenergic response by alpha1-adrenergic receptors). Additional efforts will be directed at generating variant clones having lesions in the pathway of alpha-adrenergic response in these systems. The results should provide new insight into the regulation of mammalian cells that can respond to catecholamines. The results should be of particular relevance to hypertension and other diseases that involve adrenergic response in smooth muscle and kidney.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM031987-05
Application #
3280470
Study Section
Cellular Biology and Physiology Subcommittee 1 (CBY)
Project Start
1983-01-01
Project End
1991-06-30
Budget Start
1987-07-01
Budget End
1988-06-30
Support Year
5
Fiscal Year
1987
Total Cost
Indirect Cost
Name
University of California San Diego
Department
Type
Schools of Medicine
DUNS #
077758407
City
La Jolla
State
CA
Country
United States
Zip Code
92093
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Shehnaz, D; Torres, B; Balboa, M A et al. (2000) Pyridoxal-phosphate-6-azophenyl-2',4'-disulfonate (PPADS), a putative P2Y(1) receptor antagonist, blocks signaling at a site distal to the receptor in Madin-Darby canine kidney-D(1) cells. J Pharmacol Exp Ther 292:346-50
Buscher, R; Herrmann, V; Ring, K M et al. (1999) Variability in phenylephrine response and essential hypertension: a search for human alpha(1B)-adrenergic receptor polymorphisms. J Pharmacol Exp Ther 291:793-8
Xing, M; Post, S; Ostrom, R S et al. (1999) Inhibition of phospholipase A2-mediated arachidonic acid release by cyclic AMP defines a negative feedback loop for P2Y receptor activation in Madin-Darby canine kidney D1 cells. J Biol Chem 274:10035-8
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Buscher, R; Herrmann, V; Insel, P A (1998) PCR-based methods for identifying genetic variations in human alpha1B- and beta2-adrenergic receptors. Mol Genet Metab 64:266-70
Post, S R; Rump, L C; Zambon, A et al. (1998) ATP activates cAMP production via multiple purinergic receptors in MDCK-D1 epithelial cells. Blockade of an autocrine/paracrine pathway to define receptor preference of an agonist. J Biol Chem 273:23093-7
Xing, M; Firestein, B L; Shen, G H et al. (1997) Dual role of protein kinase C in the regulation of cPLA2-mediated arachidonic acid release by P2U receptors in MDCK-D1 cells: involvement of MAP kinase-dependent and -independent pathways. J Clin Invest 99:805-14
Balsinde, J; Balboa, M A; Insel, P A et al. (1997) Differential regulation of phospholipase D and phospholipase A2 by protein kinase C in P388D1 macrophages. Biochem J 321 ( Pt 3):805-9
Xing, M; Tao, L; Insel, P A (1997) Role of extracellular signal-regulated kinase and PKC alpha in cytosolic PLA2 activation by bradykinin in MDCK-D1 cells. Am J Physiol 272:C1380-7

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