Nicotinic Acetylcholine Receptor

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==Nicotinic Acetylcholine Receptor==
==Nicotinic Acetylcholine Receptor==
The '''nicotinic acetylcholine receptor''' is a key protein in neuronal communication. This protein effectively converts neurotransmitter binding into a membrane depolarization event. The protein combines neurotransmitter binding sites, specifically [[acetylcholine]], with a cationic ion channel, specifically sodium (Na).
The '''nicotinic acetylcholine receptor''' is a key protein in neuronal communication. This protein effectively converts neurotransmitter binding into a membrane depolarization event. The protein combines neurotransmitter binding sites, specifically [[acetylcholine]], with a cationic ion channel, specifically sodium (Na).
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[[Nicotinic receptor.jpg|left|400px]]<br />
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[[Nicotinic_receptor.jpg|left|400px]]<br />
== Structure ==
== Structure ==

Revision as of 09:22, 23 August 2017

Nicotinic Acetylcholine Receptor, PDB code 2bg9

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3D Structures of nicotinic acetylcholine receptor

Updated on 23-August-2017

4d01 – hAChR α-9 subunit extracellular domain – human
4uxu – hAChR α-9 subunit extracellular domain + methyllycaconitine
4uy2 – hAChR α-9 subunit extracellular domain + α-bungarotoxin
5hbt – hAChR α-1 subunit extracellular domain + α-bungarotoxin + antibody
2qc1 – AChR α subunit extracellular domain + α-bungarotoxin - mouse
3mra – TcAChR α subunit M3 transmembrane segment – Torpedo californica - NMR
2k58 – AChR β-2 subunit M1 transmembrane segment - NMR
2k59 – AChR β-2 subunit M2 transmembrane segment - NMR
1oed – TmAChR pore – Torpedo marmorata – electron images
2bg9, 4aq5, 4aq9, 4bog, 4boi, 4bon, 4boo, 4bor, 4bot – TmAChR – Cryo-EM

References

1. Cholinesterase Inhibitors: Including Insecticides and Chemical Warfare Nerve Agents, Agency for Toxiz Substances and Disease Regulation accessed 5/2/14

2. Pierre-Jean Corringer and Jean-Pierre Changeux (2008) Nicotinic acetylcholine receptors. Scholarpedia, 3(1):3468.

3. Adcock C, Smith GR, Sansom MS. The nicotinic acetylcholine receptor: from molecular model to single-channel conductance. Eur Biophys J. 2000;29:29–37.

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