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Cholinergic inositol phosphate formation in striatal neurons is mediated by distinct mechanisms
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Cholinergic inositol phosphate formation in striatal neurons is mediated by distinct mechanisms

Bernard H. Schmidt, Olivier J.J. Manzoni, Monique Royer, Joël Bockaert et Fritz A.J. Sladeczek
European journal of pharmacology. Molecular pharmacology section, Vol.206(2), p.87-94
25/02/1991
PMID: 2065718

Résumé

Inositol phosphate formation (direct and indirect) Muscarinic receptors Ontogeny Striatal neurons in primary culture
In murine striatal neurons devoid of functional synapses (6 days in vitro) the cholinergic agonists carbachol and arecoline evoked dose-dependent inositol phosphate (InsP) responses with mean log EC 50s of −4.1 ± 0.5 and −4.48 ± 0.1, respectively. Carbachol (1 mM) and arecoline (1 mM) responses were insensitive to tetrodotoxin, a voltage-sensitive Na + channel blocker, and were blocked by pirenzepine with relatively low affinity (logIC 50 = −5.9 ± 0.3 for the carbachol response and logIC 50 = −5.8 ± 0.3 for the arecoline response). After synaptogenesis (13 days in vitro) the maximal carbachol effect doubled whereas the arecoline response remained unchanged. This additional effect was sensitive to tetrodotoxin and the voltage-dependent Ca 2− channel blocker, ω-conotoxin. The tetrodotoxin-sensitive carbachol response was blocked by lower concentrations of pirenzepine than the tetrodotoxin-insensitive carbachol response. More than 75% of the InsP response evoked by low concentrations of muscarine (1 and 10 μM) was sensitive to tetrodotoxin whereas only 38% of the InsP response stimulated by 1 mM of muscarine could be blocked by tetrodotoxin. These results suggest that there are at least two different mechanisms (depending on the stage of development), activated most probably by two different muscarinic receptors responsible for the carbachol-induced InsP formation in striatal neurons.

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