MODULATION OF CELLULAR EXCITABILITY IN NEOCORTEX - MUSCARINIC RECEPTOR AND 2ND MESSENGER-MEDIATED ACTIONS OF ACETYLCHOLINE

被引:73
作者
COX, CL [1 ]
METHERATE, R [1 ]
ASHE, JH [1 ]
机构
[1] UNIV CALIF RIVERSIDE,DEPT PSYCHOL,RIVERSIDE,CA 92521
关键词
MUSCARINIC AGONISTS; PHORBOL ESTERS; GLUTAMATE; POTENTIATION; PLASTICITY;
D O I
10.1002/syn.890160206
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Muscarinic-type acetylcholine (ACh) receptors are involved in a variety of cortical functions. ACh ''activates'' neocortex; simultaneously modifying spontaneous subthreshold activity, intrinsic neuronal oscillations and spike discharge modes, and responsiveness to fast (putative glutamatergic) synaptic inputs. However, beyond the general involvement of muscarinic receptors, a mechanistic understanding of integrated cholinergic actions, and interactions with non-cholinergic transmission, is lacking. We have addressed this problem using intracellular recordings from the in vitro auditory neocortex. First, we investigated cholinergic modification of responses to the excitatory amino acid glutamate. ACh, or the muscarinic agonist methacholine, produced a lasting enhancement of glutamate-mediated membrane depolarizations. Muscarinic receptors of the M(1) and/or M(3) subtype, rather than M(2) or nicotinic receptors, mediated this enhancement. Subsequently, we investigated whether second messenger systems contribute to observed muscarinic actions. Activation of protein kinase C with phorbol 12,13-dibutyrate (4 beta-PDBu), enhanced neuronal responses to glutamate. The effect of 4 beta-PDBu was attenuated by the kinase antagonist H7. Finally, we attempted to identify postsynaptic actions of endogenous ACh. Tetanic stimulation of cholinergic afferents elicited voltage-dependent effects, including reduced spike frequency adaptation and reduced slow afterhyperpolarization (sAHP) elicited by transmembrane depolarizing stimuli. These effects were mimicked by methacholine, enhanced by eserine, and antagonized by muscarinic receptor antagonists. These data suggest that cholinergic modulation in neocortex likely involves the integrated actions of diverse mechanisms, primarily gated by muscarinic receptors, and at least partly involving second messenger systems.
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收藏
页码:123 / 136
页数:14
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