Nicotinic Acetylcholine Receptors and Nicotinic Cholinergic Mechanisms of the Central Nervous System

Никотиновые ацетилхолиновые рецепторы и никотинергические холинергические механизмы центральной нервной системы
John A. Dani, Daniel Bertrand
2006-09-29

neuronal nAChR subtypesneuropsychiatric disordersnicotinic acetylcholine receptorsnicotinic cholinergic mechanismssynaptic plasticity
Subtypes of neuronal nicotinic acetylcholine receptors (nAChRs) are constructed from numerous subunit combinations that compose channel-receptor complexes with varied functional and pharmacological characteristics. Structural and functional diversity and the broad presynaptic, postsynaptic, and nonsynaptic locations of nAChRs underlie their mainly modulatory roles throughout the mammalian brain. Presynaptic and preterminal nicotinic receptors enhance neurotransmitter release, postsynaptic nAChRs contribute a small minority of fast excitatory transmission, and nonsynaptic nAChRs modulate many neurotransmitter systems by influencing neuronal excitability. Nicotinic receptors have roles in development and synaptic plasticity, and nicotinic mechanisms participate in learning, memory, and attention. Decline, disruption, or alterations of nicotinic cholinergic mechanisms contribute to dysfunctions such as epilepsy, schizophrenia, Parkinson's disease, autism, dementia with Lewy bodies, Alzheimer's disease, and addiction.
1
Neuronal nicotinic acetylcholine receptors comprise diverse subunit combinations, producing channel complexes with distinct functional and pharmacological properties.
2
Nicotinic cholinergic mechanisms support learning, memory, and attention, while their disruption is associated with epilepsy, schizophrenia, neurodegenerative disorders, autism, and addiction.
3
Nonsynaptic nicotinic receptors regulate multiple neurotransmitter systems by influencing neuronal excitability and contribute to development and synaptic plasticity.
4
Presynaptic and preterminal nicotinic receptors enhance neurotransmitter release, whereas postsynaptic receptors provide a small fraction of fast excitatory transmission.
5
Their presynaptic, postsynaptic, and nonsynaptic distributions support predominantly modulatory roles throughout the mammalian brain.

Neuronal nicotinic acetylcholine receptors and nicotinic cholinergic mechanisms in the mammalian central nervous system

Their structural and functional diversity, synaptic localization and modulatory roles in neurotransmitter release, neuronal excitability, development, synaptic plasticity, learning, memory, attention, and neurological dysfunction

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2006-09-29
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John A. Dani
Daniel Bertrand
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