Activation of phosphoinositide turnover and protein kinase C by neurotransmitters that modulate calcium channels in embryonic chick sensory neurons
Author:
Affiliation:
1. Department of Anatomy and Cell Biology in the Center for Neurobiology and Behavior; Columbia University; College of Physicians and Surgeons; 630 W 168th St New York NY 10032 U.S.A.
Publisher
Wiley
Subject
Developmental Biology,Developmental Neuroscience
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1016/0736-5748(92)90032-U/fullpdf
Reference46 articles.
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3. Changes in the levels of inositol phosphates after agonist-dependent hydrolysis of membrane phosphoinositides;Berridge;Biochem. J.,1983
4. Pharmacological characterization of amine receptors on embryonic chick sensory neurones;Canfield;Br. J. Pharmacol.,1984
5. Polyphosphoinositide phosphodiesterase: regulation by a novel guanine nucleotide binding protein, Gp;Cockcroft;TIBS,1987
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1. CaV2.1 channels are modulated by muscarinic M1 receptors through phosphoinositide hydrolysis in neostriatal neurons;Neuroscience;2010-01
2. Dopamine D2 Receptor Isoforms Expressed in AtT20 Cells Differentially Couple to G Proteins to Acutely Inhibit High Voltage-Activated Calcium Channels;Journal of Neurochemistry;2002-01-18
3. Selective Coupling of G Protein βγ Complexes to Inhibition of Ca2+ Channels;Journal of Biological Chemistry;2000-09
4. Cellular and Biochemical Responses to GABAB Receptor Activation;The GABA Receptors;1997
5. Evidence for pharmacologically distinct GABAB receptors associated with cAMP production in rat brain;Brain Research;1996-05
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