Synonyms: 1-NP
Compound class:
Synthetic organic
![]() Ligand Activity Visualisation ChartsThese are box plot that provide a unique visualisation, summarising all the activity data for a ligand taken from ChEMBL and GtoPdb across multiple targets and species. Click on a plot to see the median, interquartile range, low and high data points. A value of zero indicates that no data are available. A separate chart is created for each target, and where possible the algorithm tries to merge ChEMBL and GtoPdb targets by matching them on name and UniProt accession, for each available species. However, please note that inconsistency in naming of targets may lead to data for the same target being reported across multiple charts. ✖ |
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References |
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Cloning and characterization of the guinea pig 5-HT1F receptor subtype: a comparison of the pharmacological profile to the human species homolog. Neuropharmacology, 36 (4-5): 569-76. [PMID:9225282] |
2. Adham N, Kao HT, Schecter LE, Bard J, Olsen M, Urquhart D, Durkin M, Hartig PR, Weinshank RL, Branchek TA. (1993)
Cloning of another human serotonin receptor (5-HT1F): a fifth 5-HT1 receptor subtype coupled to the inhibition of adenylate cyclase. Proc Natl Acad Sci USA, 90 (2): 408-12. [PMID:8380639] |
3. Bai F, Yin T, Johnstone EM, Su C, Varga G, Little SP, Nelson DL. (2004)
Molecular cloning and pharmacological characterization of the guinea pig 5-HT1E receptor. Eur J Pharmacol, 484 (2-3): 127-39. [PMID:14744596] |
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Cloning of a novel human serotonin receptor (5-HT7) positively linked to adenylate cyclase. J Biol Chem, 268 (31): 23422-6. [PMID:8226867] |
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5-HT1B receptor antagonist properties of novel arylpiperazide derivatives of 1-naphthylpiperazine. J Med Chem, 40 (24): 3974-8. [PMID:9397179] |
6. Kursar JD, Nelson DL, Wainscott DB, Baez M. (1994)
Molecular cloning, functional expression, and mRNA tissue distribution of the human 5-hydroxytryptamine2B receptor. Mol Pharmacol, 46 (2): 227-34. [PMID:8078486] |
7. Monsma Jr FJ, Shen Y, Ward RP, Hamblin MW, Sibley DR. (1993)
Cloning and expression of a novel serotonin receptor with high affinity for tricyclic psychotropic drugs. Mol Pharmacol, 43 (3): 320-7. [PMID:7680751] |
8. Parker EM, Izzarelli DG, Lewis-Higgins L, Palmer D, Shapiro RA. (1996)
Two amino acid differences in the sixth transmembrane domain are partially responsible for the pharmacological differences between the 5-HT1D beta and 5-HT1E 5-hydroxytryptamine receptors. J Neurochem, 67 (5): 2096-103. [PMID:8863519] |
9. Shen Y, Monsma Jr FJ, Metcalf MA, Jose PA, Hamblin MW, Sibley DR. (1993)
Molecular cloning and expression of a 5-hydroxytryptamine7 serotonin receptor subtype. J Biol Chem, 268 (24): 18200-4. [PMID:8394362] |
10. Wainscott DB, Cohen ML, Schenck KW, Audia JE, Nissen JS, Baez M, Kursar JD, Lucaites VL, Nelson DL. (1993)
Pharmacological characteristics of the newly cloned rat 5-hydroxytryptamine2F receptor. Mol Pharmacol, 43 (3): 419-26. [PMID:8450835] |
11. Wainscott DB, Sasso DA, Kursar JD, Baez M, Lucaites VL, Nelson DL. (1998)
[3H]Rauwolscine: an antagonist radioligand for the cloned human 5-hydroxytryptamine2b (5-HT2B) receptor. Naunyn Schmiedebergs Arch Pharmacol, 357 (1): 17-24. [PMID:9459568] |
12. Weinshank RL, Zgombick JM, Macchi MJ, Branchek TA, Hartig PR. (1992)
Human serotonin 1D receptor is encoded by a subfamily of two distinct genes: 5-HT1D alpha and 5-HT1D beta. Proc Natl Acad Sci USA, 89 (8): 3630-4. [PMID:1565658] |