Neuromodulators: Difference between revisions

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**Noradrenaline
**Noradrenaline
**Carmoterol, see [[2y02]].
**Carmoterol, see [[2y02]].
**Salbutamol (Albuterol in USA), [[2y04]].
**[[Salbutamol]] (Albuterol in USA), [[2y04]].
*Beta blockers:
*Beta blockers:
**Metoprolol
**Metoprolol
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*G<sub>s</sub>: adenylate cyclase activated, cAMP up. For G<sub>s</sub> see [[Beta2 adrenergic receptor-Gs protein complex updated]].
*G<sub>s</sub>: adenylate cyclase activated, cAMP up. For G<sub>s</sub> see [[Beta2 adrenergic receptor-Gs protein complex updated]].
β2-adrenergic agonists:
β2-adrenergic agonists:
**Salbutamol (Albuterol in USA)
**[[Salbutamol]] (Albuterol in USA)
**Bitolterol mesylate
**Bitolterol mesylate
**Formoterol
**[[Formoterol]]
**Isoprenaline
**Isoprenaline
**Levalbuterol
**Levalbuterol
**Metaproterenol
**Metaproterenol
**Salmeterol
**[[Salmeterol]]
**Terbutaline
**Terbutaline
**Ritodrine
**Ritodrine
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*[[Histamine H1 receptor]]
*[[Histamine H1 receptor]]
* [[3rze]] - human histamine H1 receptor with an antagonist doxepin.
* [[3rze]] - human histamine H1 receptor with an antagonist doxepin.
=Serotonin=
==Serotonin receptors==
'''5-hydroxytryptamine (5-HT), Serotonin receptors''' are found on the membrane of neurons in the central nervous system and peripheral nervous system. These receptors allow for the body to respond to serotonin and regulate many biological pathways. Serotonin, also known as 5 hydroxytryptamine, is an endogenous neurotransmitter made from tryptophan and is largely found in the gastrointestinal tract. It is known to regulate mood, appetite, digestion, circadian rhythm, learning and internal temperature regulation. It is can be an inhibitory or excitatory neurotransmitter that is released into the synaptic space and can bind to receptors on the postsynaptic neuron or be taken back up into the presynaptic neuron via Serotonin re-uptake transporters.<ref>Goodsell D. ''Serotonin Receptor''. RCSB PDB-101 (2013) [http://www.rcsb.org/pdb/101/motm.do?momID=164 DOI: 10.2210/rcsb_pdb/mom_2013_8]</ref> 5-HT receptors are classified into 7 different subfamilies (5-HT1, 5-HT2, 5-HT3, etc.) by signaling mechanisms and homology of structure. All 5-HT receptors are known to have G-protein linked pathways except for the 5-HT3 receptor which acts as an ion channel. <ref name ="one">Wang C, Jiang Y, Ma J, Wu H, Wacker D, Katritch V, Han GW, Liu W, Huang XP, Vardy E, McCorvy JD, Gao X, Zhou EZ, Melcher K, Zhang C, Bai F, Yang H, Yang L, Jiang H, Roth BL, Cherezov V, Stevens RC, Xu HE. Structural Basis for Molecular Recognition at Serotonin Receptors. Science. 2013 May 3; 340(6132): 610–614. PMID:3644373 [http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3644373/]</ref>
===[[5-hydroxytryptamine receptor|Serotonin receptors, main page]]===
===[[5-hydroxytryptamine receptor 3D structures|3D structures of Serotonin receptors]]===
===[[5-ht3a receptor|5-HT3A receptor]]===
==[[Serotonin Transporter]]==
==See also [[Serotonin N-acetyltransferase]]==
=Nitric Oxide=
Neuronal Nitric Oxide Synthase ([[Nos1]]) is functioning in cell signaling and communication - a vital part of the nervous tissue.
</StructureSection>
</StructureSection>
== References ==
== References ==
<references/>
<references/>

Latest revision as of 12:39, 5 June 2023

Structure of the human dopamine D3 receptor in complex with the antagonist eticlopride and maltose, 3pbl

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References

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