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Histamine and Histamine Receptors in Health and Disease

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Cover of 'Histamine and Histamine Receptors in Health and Disease'

Table of Contents

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    Book Overview
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    Chapter 8 Histamine H2 Receptor in Blood Cells: A Suitable Target for the Treatment of Acute Myeloid Leukemia
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    Chapter 9 Histamine and Histamine Receptors in Allergic Dermatitis
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    Chapter 10 Structural Analysis of the Histamine H1 Receptor
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    Chapter 11 Role of the Histamine H4-Receptor in Bronchial Asthma
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    Chapter 12 Role of the Histamine H3 Receptor in the Central Nervous System
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    Chapter 13 Histamine Clearance Through Polyspecific Transporters in the Brain
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    Chapter 14 Histamine H1 Receptor Gene Expression and Drug Action of Antihistamines
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    Chapter 15 Regulation of the Cardiovascular System by Histamine
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    Chapter 18 Histamine Release from Mast Cells and Basophils
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    Chapter 22 Analytical Methods for the Quantification of Histamine and Histamine Metabolites
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    Chapter 54 Histamine Food Poisoning.
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    Chapter 85 Allergy, Histamine and Antihistamines
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    Chapter 113 Molecular Modelling Approaches for the Analysis of Histamine Receptors and Their Interaction with Ligands
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    Chapter 124 Pharmacological Characterization of Human Histamine Receptors and Histamine Receptor Mutantsin the Sf9 Cell Expression System
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    Chapter 125 Changes in Histidine Decarboxylase, Histamine N-Methyltransferase and Histamine Receptors in Neuropsychiatric Disorders
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    Chapter 127 Histidine Decarboxylase Knockout Mice as a Model of the Pathophysiology of Tourette Syndrome and Related Conditions
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    Chapter 130 Clinical Development of Histamine H4 Receptor Antagonists
Attention for Chapter 124: Pharmacological Characterization of Human Histamine Receptors and Histamine Receptor Mutantsin the Sf9 Cell Expression System
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Chapter title
Pharmacological Characterization of Human Histamine Receptors and Histamine Receptor Mutantsin the Sf9 Cell Expression System
Chapter number 124
Book title
Histamine and Histamine Receptors in Health and Disease
Published in
Handbook of experimental pharmacology, January 2017
DOI 10.1007/164_2016_124
Pubmed ID
Book ISBNs
978-3-31-958192-7, 978-3-31-958194-1
Authors

Erich H. Schneider, Roland Seifert

Abstract

A large problem of histamine receptor research is data heterogeneity. Various experimental approaches, the complex signaling pathways of mammalian cells, and the use of different species orthologues render it difficult to compare and interpret the published results. Thus, the four human histamine receptor subtypes were analyzed side-by-side in the Sf9 insect cell expression system, using radioligand binding assays as well as functional readouts proximal to the receptor activation event (steady-state GTPase assays and [(35)S]GTPγS assays). The human H1R was co-expressed with the regulators of G protein signaling RGS4 or GAIP, which unmasked a productive interaction between hH1R and insect cell Gαq. By contrast, functional expression of the hH2R required the generation of an hH2R-Gsα fusion protein to ensure close proximity of G protein and receptor. Fusion of hH2R to the long (GsαL) or short (GsαS) splice variant of Gαs resulted in comparable constitutive hH2R activity, although both G protein variants show different GDP affinities. Medicinal chemistry studies revealed profound species differences between hH1R/hH2R and their guinea pig orthologues gpH1R/gpH2R. The causes for these differences were analyzed by molecular modeling in combination with mutational studies. Co-expression of the hH3R with Gαi1, Gαi2, Gαi3, and Gαi/o in Sf9 cells revealed high constitutive activity and comparable interaction efficiency with all G protein isoforms. A comparison of various cations (Li(+), Na(+), K(+)) and anions (Cl(-), Br(-), I(-)) revealed that anions with large radii most efficiently stabilize the inactive hH3R state. Potential sodium binding sites in the hH3R protein were analyzed by expressing specific hH3R mutants in Sf9 cells. In contrast to the hH3R, the hH4R preferentially couples to co-expressed Gαi2 in Sf9 cells. Its high constitutive activity is resistant to NaCl or GTPγS. The hH4R shows structural instability and adopts a G protein-independent high-affinity state. A detailed characterization of affinity and activity of a series of hH4R antagonists/inverse agonists allowed first conclusions about structure/activity relationships for inverse agonists at hH4R. In summary, the Sf9 cell system permitted a successful side-by-side comparison of all four human histamine receptor subtypes. This chapter summarizes the results of pharmacological as well as medicinal chemistry/molecular modeling approaches and demonstrates that these data are not only important for a deeper understanding of HxR pharmacology, but also have significant implications for the molecular pharmacology of GPCRs in general.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 11 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 2 18%
Researcher 2 18%
Student > Bachelor 1 9%
Student > Master 1 9%
Student > Doctoral Student 1 9%
Other 0 0%
Unknown 4 36%
Readers by discipline Count As %
Pharmacology, Toxicology and Pharmaceutical Science 6 55%
Biochemistry, Genetics and Molecular Biology 1 9%
Unknown 4 36%