Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors

To learn the differences between the structure-activity relationship and molecular vibration-activity relationship in the ligand-receptor interaction of the histamine receptor, 47 ligands of the histamine receptor were analyzed by structural similarity and molecular vibrational frequency patterns. T...

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Main Author: S. June Oh
Format: Article
Language:English
Published: BioMed Central 2012-06-01
Series:Genomics & Informatics
Subjects:
Online Access:http://genominfo.org/upload/pdf/gni-10-128.pdf
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author S. June Oh
author_facet S. June Oh
author_sort S. June Oh
collection DOAJ
description To learn the differences between the structure-activity relationship and molecular vibration-activity relationship in the ligand-receptor interaction of the histamine receptor, 47 ligands of the histamine receptor were analyzed by structural similarity and molecular vibrational frequency patterns. The radial tree that was produced by clustering analysis of molecular vibrational frequency patterns shows its potential for the functional classification of histamine receptor ligands.
format Article
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institution Kabale University
issn 1598-866X
2234-0742
language English
publishDate 2012-06-01
publisher BioMed Central
record_format Article
series Genomics & Informatics
spelling doaj-art-279a2212e25c40eca4447cae03a61a162025-02-02T05:44:14ZengBioMed CentralGenomics & Informatics1598-866X2234-07422012-06-0110212813210.5808/GI.2012.10.2.1286Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine ReceptorsS. June Oh0Department of Pharmacology, Inje University College of Medicine, Busan 614-735, Korea.To learn the differences between the structure-activity relationship and molecular vibration-activity relationship in the ligand-receptor interaction of the histamine receptor, 47 ligands of the histamine receptor were analyzed by structural similarity and molecular vibrational frequency patterns. The radial tree that was produced by clustering analysis of molecular vibrational frequency patterns shows its potential for the functional classification of histamine receptor ligands.http://genominfo.org/upload/pdf/gni-10-128.pdfcorralled intensity of molecular vibrational frequencyG protein-coupled receptorshistamine receptorsmolecular vibration-activity relationship
spellingShingle S. June Oh
Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
Genomics & Informatics
corralled intensity of molecular vibrational frequency
G protein-coupled receptors
histamine receptors
molecular vibration-activity relationship
title Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
title_full Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
title_fullStr Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
title_full_unstemmed Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
title_short Characteristics in Molecular Vibrational Frequency Patterns between Agonists and Antagonists of Histamine Receptors
title_sort characteristics in molecular vibrational frequency patterns between agonists and antagonists of histamine receptors
topic corralled intensity of molecular vibrational frequency
G protein-coupled receptors
histamine receptors
molecular vibration-activity relationship
url http://genominfo.org/upload/pdf/gni-10-128.pdf
work_keys_str_mv AT sjuneoh characteristicsinmolecularvibrationalfrequencypatternsbetweenagonistsandantagonistsofhistaminereceptors