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Cloning, expression, and pharmacological characterization of a novel human histamine receptor.

Authors :
Zhu Y
Michalovich D
Wu H
Tan KB
Dytko GM
Mannan IJ
Boyce R
Alston J
Tierney LA
Li X
Herrity NC
Vawter L
Sarau HM
Ames RS
Davenport CM
Hieble JP
Wilson S
Bergsma DJ
Fitzgerald LR
Source :
Molecular pharmacology [Mol Pharmacol] 2001 Mar; Vol. 59 (3), pp. 434-41.
Publication Year :
2001

Abstract

Using a genomics-based reverse pharmacological approach for screening orphan G-protein coupled receptors, we have identified and cloned a novel high-affinity histamine receptor. This receptor, termed AXOR35, is most closely related to the H3 histamine receptor, sharing 37% protein sequence identity. A multiple responsive element/cyclic AMP-responsive element-luciferase reporter assay was used to identify histamine as a ligand for AXOR35. When transfected into human embryonic kidney 293 cells, the AXOR35 receptor showed a strong, dose-dependent calcium mobilization response to histamine and H3 receptor agonists including imetit and immepip. Radioligand binding confirmed that the AXOR35 receptor was a high-affinity histamine receptor. The pharmacology of the AXOR35 receptor was found to closely resemble that of the H3 receptor; the major difference was that (R)-alpha-methylhistamine was a low potency agonist of the AXOR35 receptor. Thioperamide is an antagonist at AXOR 35. Expression of AXOR35 mRNA in human tissues is highest in peripheral blood mononuclear cells and in tissues likely to contain high concentrations of blood cells, such as bone marrow and lung. In situ hybridization analysis of a wide survey of mouse tissues showed that mouse AXOR35 mRNA is selectively expressed in hippocampus. The identification and localization of this new histamine receptor will expand our understanding of the physiological and pathological roles of histamine and may provide additional opportunities for pharmacological modification of these actions.

Details

Language :
English
ISSN :
0026-895X
Volume :
59
Issue :
3
Database :
MEDLINE
Journal :
Molecular pharmacology
Publication Type :
Academic Journal
Accession number :
11179436
Full Text :
https://doi.org/10.1124/mol.59.3.434