Literature DB >> 20672377

Comparison analysis of primary ligand-binding sites in seven-helix membrane proteins.

Vagmita Pabuwal1, Zhijun Li.   

Abstract

Seven-helix transmembrane proteins, including the G-protein-coupled receptors (GPCRs), mediate a broad range of fundamental cellular activities through binding to a wide range of ligands. Understanding the structural basis for the ligand-binding selectivity of these proteins is of significance to their structure-based drug design. Comparison analysis of proteins' ligand-binding sites provides a useful way to study their structure-activity relationships. Various computational methods have been developed for the binding-site comparison of soluble proteins. In this work, we applied this approach to the analysis of the primary ligand-binding sites of 92 seven-helix transmembrane proteins. Results of the studies confirmed that the binding site of bacterial rhodopsins is indeed different from all GPCRs. In the latter group, further comparison of the binding sites indicated a group of residues that could be responsible for ligand-binding selectivity and important for structure-based drug design. Furthermore, unexpected binding-site dissimilarities were observed among adrenergic and adenosine receptors, suggesting that the percentage of the overall sequence identity between a target protein and a template protein alone is not sufficient for selecting the best template for homology modeling of seven-helix membrane proteins. These results provided novel insight into the structural basis of ligand-binding selectivity of seven-helix membrane proteins and are of practical use to the computational modeling of these proteins. 2010 Wiley Periodicals, Inc.

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Year:  2011        PMID: 20672377      PMCID: PMC2966529          DOI: 10.1002/bip.21528

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  36 in total

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Journal:  Science       Date:  2007-10-25       Impact factor: 47.728

5.  Functional classification of protein kinase binding sites using Cavbase.

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6.  Detecting evolutionary relationships across existing fold space, using sequence order-independent profile-profile alignments.

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Review 7.  Structural diversity of G protein-coupled receptors and significance for drug discovery.

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Journal:  Nat Rev Drug Discov       Date:  2008-04       Impact factor: 84.694

8.  GPCR engineering yields high-resolution structural insights into beta2-adrenergic receptor function.

Authors:  Daniel M Rosenbaum; Vadim Cherezov; Michael A Hanson; Søren G F Rasmussen; Foon Sun Thian; Tong Sun Kobilka; Hee-Jung Choi; Xiao-Jie Yao; William I Weis; Raymond C Stevens; Brian K Kobilka
Journal:  Science       Date:  2007-10-25       Impact factor: 47.728

9.  PDB_TM: selection and membrane localization of transmembrane proteins in the protein data bank.

Authors:  Gábor E Tusnády; Zsuzsanna Dosztányi; István Simon
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10.  From the similarity analysis of protein cavities to the functional classification of protein families using cavbase.

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Journal:  J Mol Biol       Date:  2006-04-25       Impact factor: 5.469

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  1 in total

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  1 in total

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