Transmembrane (cell surface) receptors

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The <scene name='71/716548/5-ht2b_receptor/1'>5-HT2B receptor</scene> is important in utilizing serotonin signals to encourage proper development and continuing function of the cardiovascular system. Overexpression of 5-HT2B has been linked to congestive heart failure. 5-HT2B utilizes the α Gq protein pathway which triggers intracellular cGMP production through activation of nictric-oxidase synthase (NOS). This receptor is also known for being the target of the drug LSD, which is similar in structure to serotonin. The structure of this receptor is much like that of 5-HT1B, however significant differences are seen in their binding pockets. The pocket of 5-HT1B is much broader than <scene name='71/716548/5-ht2b/1'>that of 5-HT2B</scene>, due to a 3 Å shift of the top of helix V. Perhaps this difference highlights a variation in serotonin affinity between the 2 families. The similar characteristics of the 5-HT1B and 5-HT2B receptor families consist of 7 α-helices and the N-terminus sticking out into extracellular space.
The <scene name='71/716548/5-ht2b_receptor/1'>5-HT2B receptor</scene> is important in utilizing serotonin signals to encourage proper development and continuing function of the cardiovascular system. Overexpression of 5-HT2B has been linked to congestive heart failure. 5-HT2B utilizes the α Gq protein pathway which triggers intracellular cGMP production through activation of nictric-oxidase synthase (NOS). This receptor is also known for being the target of the drug LSD, which is similar in structure to serotonin. The structure of this receptor is much like that of 5-HT1B, however significant differences are seen in their binding pockets. The pocket of 5-HT1B is much broader than <scene name='71/716548/5-ht2b/1'>that of 5-HT2B</scene>, due to a 3 Å shift of the top of helix V. Perhaps this difference highlights a variation in serotonin affinity between the 2 families. The similar characteristics of the 5-HT1B and 5-HT2B receptor families consist of 7 α-helices and the N-terminus sticking out into extracellular space.
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Serotonin '''5-HT2C receptors''' are targets for treatment of depressive and anxious states. 5-HT2C receptors may be involved in the effects of corticosterone-induced hyperphagia<ref>PMID:28186389</ref>.
*[[Adrenergic receptor|Adrenergic receptors in general]]
*[[Adrenergic receptor|Adrenergic receptors in general]]
*[[UMass Chem 423 Student Projects 2011-1#Beta-1 Adrenergic GPCR|Beta-1 Adrenergic receptor]]
*[[UMass Chem 423 Student Projects 2011-1#Beta-1 Adrenergic GPCR|Beta-1 Adrenergic receptor]]

Revision as of 14:42, 28 April 2021

Structure of κ-opioid receptor complex with opioid antagonist, citric acid, PEG and octadec-enoate derivative (PDB entry 4djh)

Drag the structure with the mouse to rotate

References

  1. Granier S, Manglik A, Kruse AC, Kobilka TS, Thian FS, Weis WI, Kobilka BK. Structure of the delta-opioid receptor bound to naltrindole. Nature. 2012 May 16;485(7398):400-4. doi: 10.1038/nature11111. PMID:22596164 doi:10.1038/nature11111
  2. Granier S, Manglik A, Kruse AC, Kobilka TS, Thian FS, Weis WI, Kobilka BK. Structure of the delta-opioid receptor bound to naltrindole. Nature. 2012 May 16;485(7398):400-4. doi: 10.1038/nature11111. PMID:22596164 doi:10.1038/nature11111
  3. Krumm BE, White JF, Shah P, Grisshammer R. Structural prerequisites for G-protein activation by the neurotensin receptor. Nat Commun. 2015 Jul 24;6:7895. doi: 10.1038/ncomms8895. PMID:26205105 doi:http://dx.doi.org/10.1038/ncomms8895
  4. Yin J, Mobarec JC, Kolb P, Rosenbaum DM. Crystal structure of the human OX orexin receptor bound to the insomnia drug suvorexant. Nature. 2014 Dec 22. doi: 10.1038/nature14035. PMID:25533960 doi:http://dx.doi.org/10.1038/nature14035
  5. Hanson MA, Roth CB, Jo E, Griffith MT, Scott FL, Reinhart G, Desale H, Clemons B, Cahalan SM, Schuerer SC, Sanna MG, Han GW, Kuhn P, Rosen H, Stevens RC. Crystal structure of a lipid G protein-coupled receptor. Science. 2012 Feb 17;335(6070):851-5. PMID:22344443 doi:10.1126/science.1215904
  6. Ge T, Zhang Z, Lv J, Song Y, Fan J, Liu W, Wang X, Hall FS, Li B, Cui R. The role of 5-HT2c receptor on corticosterone-mediated food intake. J Biochem Mol Toxicol. 2017 Jun;31(6). doi: 10.1002/jbt.21890. Epub 2017 Feb 10. PMID:28186389 doi:http://dx.doi.org/10.1002/jbt.21890

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