Possible role for cyclic nucleotides and phosphorylated membrane proteins in postsynaptic actions of neurotransmitters
Abstract
The postsynaptic actions of some neurotransmitters may be mediated through cyclic nucleotides and cyclic nucleotide-dependent phosphorylation of specific membrane proteins in postsynaptic cells. In addition to providing a molecular basis for the actions of several neurotransmitters and of certain drugs affecting behaviour, the model suggests a mechanism by which neurotransmitter signals may be converted into electrophysiological responses in postsynaptic cells.
References
Guanosine 3',5'-monophosphate in sympathetic ganglia: increase assoicated with synaptic transmission
Citations
Distribution of endogenously phosphorylated proteins in subcellular fractions of rat cerebral cortex
Isolated horizontal cells from carp retina demonstrate dopamine-dependent accumulation of cyclic AMP
ACTH-induced inhibition of endogenous rat brain protein phosphorylation in vitro: structure activity
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