Synergistic Interactions Between α1‐ and α2‐Adrenergic Receptors in Activating 3H‐Inositol Phosphate Formation in Primary Glial Cell Cultures
- 1 March 1991
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 56 (3), 953-960
- https://doi.org/10.1111/j.1471-4159.1991.tb02014.x
Abstract
Norepinephrine (NE)-stimulated 3H-inositol phosphate (3H-InsP) formation in primary glial cell cultures is thought to be due to alpha 1-adrenergic receptor activation. Surprisingly, the alpha 1-selective agonists phenylephrine and methoxamine showed only 12-21% of the intrinsic activity of NE in activating this response. Although the alpha 2-selective agonist UK 14,304 was itself inactive, inclusion of UK 14,304 increased the response to the alpha 1-selective agonists by about threefold. This increase was concentration-dependent and occurred at all time points examined. 6-Fluoro-NE and alpha-methyl-NE mimicked the effect of NE in glial cultures, although with lower potencies. However, several partial agonists were ineffective in activating this response, in both the presence and absence of UK 14,304. Synergistic interactions were not observed for alpha 1-mediated responses in slices of rat cerebral cortex, either for formation of 3H-InsPs or potentiation of isoproterenol- or adenosine-stimulated cyclic AMP accumulation. Both UK 14,304 and phenylephrine inhibited NE-stimulated 3H-InsP formation in concentrations similar to those necessary to activate this response directly. These results suggest that NE activates 3H-InsP formation in primary glial cultures by synergistic actions on both alpha 1- and alpha 2-adrenergic receptors. The agonists UK 14,304 and phenylephrine also can act to inhibit the response to NE competitively.Keywords
This publication has 21 references indexed in Scilit:
- Comparison of α1‐Adrenergic Receptor‐Stimulated Inositol Phosphate Formation in Primary Neuronal and Glial CulturesJournal of Neurochemistry, 1990
- Inositol phosphates and cell signallingNature, 1989
- Molecular Characterization of the Human β 3 -Adrenergic ReceptorScience, 1989
- α-Adrenergic inhibition of sympathetic neurotransmitter release mediated by modulation of N-type calcium-channel gatingNature, 1989
- Inositol Phospholipid Hydrolysis and Potentiation of Cyclic AMP Formation by Noradrenaline in Rat Cerebral Cortex Slices Are Not Mediated by the Same ?-Adrenoceptor SubtypesJournal of Neurochemistry, 1989
- α1Adrenoceptor subtypes linked to different mechanisms for increasing intracellular Ca2+ in smooth muscleNature, 1987
- Alpha-1 and alpha-2 adrenoceptor binding in cerebral cortex: Competition studies with [3H]prazosin and [3H]idazoxanJournal of Neural Transmission, 1987
- Norepinephrine Stimulation of Phosphoinositide Hydrolysis in Rat Cerebral Cortex Is Associated with the Alpha1‐AdrenoceptorJournal of Neurochemistry, 1984
- Localization of insulin-like immunoreactivity in the neurons from primary cultures of rat brainExperimental Cell Research, 1983
- A RADIOISOTOPIC METHOD FOR MEASURING THE FORMATION OF ADENOSINE 3′,5′‐CYCLIC MONOPHOSPHATE IN INCUBATED SLICES OF BRAINJournal of Neurochemistry, 1969