Literature DB >> 18496794

Molecular modeling of A1 and A2A adenosine receptors: comparison of rhodopsin- and beta2-adrenergic-based homology models through the docking studies.

Olga Yuzlenko1, Katarzyna Kieć-Kononowicz.   

Abstract

Adenosine receptors (ARs) are members of the superfamily of G protein-coupled receptors. The homology models of adenosine A1 and A2A receptors were constructed. The high-resolution X-ray structure of bovine rhodopsin and crystal structure of beta2-adrenergic receptor were used as templates. The binding sites of the A1 and A2A ARs were constructed by using data obtained from mutagenesis experiments as well as docking simulations of the respective AR antagonsists DPCPX and XAC. To compare rhodopsin- and beta2-adrenergic-based models, the binding mode of A1 (KW-3902, LUF-5437) and A2A (KW-6002, ZM-241385) ARs antagonists were also examined. The differences in the binding ability of both models were noted during the study. The beta2-adrenergic-based A2A AR model was much more capable to stabilize the ligand in the binding site cavity than the corresponding rhodopsin-based A2A AR model, however, such differences were not so clear in case of A1 AR models. It was suggested that for the A1 AR it is possible to use the crystal structure of rhodopsin as a template as well as beta2-adrenergic receptor, but for A2A AR, with the now available beta2-adrenergic receptor X-ray structure, docking studies should be avoided on the rhodopsin-based model. However, taking into account that the beta2AR shares about 31% of the residues with the AR in comparison to 21% in case of bRho, we suggest using beta2-adrenergic-based models for the A1 and A2A ARs for further in silico ligand screening also because of their generally better ability to stabilize ligands inside the binding pocket. Copyright 2008 Wiley Periodicals, Inc.

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Year:  2009        PMID: 18496794     DOI: 10.1002/jcc.21001

Source DB:  PubMed          Journal:  J Comput Chem        ISSN: 0192-8651            Impact factor:   3.376


  11 in total

1.  Toward the three-dimensional structure and lysophosphatidic acid binding characteristics of the LPA(4)/p2y(9)/GPR23 receptor: a homology modeling study.

Authors:  Guo Li; Philip D Mosier; Xianjun Fang; Yan Zhang
Journal:  J Mol Graph Model       Date:  2009-04-19       Impact factor: 2.518

2.  A computational study on cannabinoid receptors and potent bioactive cannabinoid ligands: homology modeling, docking, de novo drug design and molecular dynamics analysis.

Authors:  Serdar Durdagi; Manthos G Papadopoulos; Panagiotis G Zoumpoulakis; Catherine Koukoulitsa; Thomas Mavromoustakos
Journal:  Mol Divers       Date:  2009-06-18       Impact factor: 2.943

3.  Ligand binding and subtype selectivity of the human A(2A) adenosine receptor: identification and characterization of essential amino acid residues.

Authors:  Veli-Pekka Jaakola; J Robert Lane; Judy Y Lin; Vsevolod Katritch; Adriaan P Ijzerman; Raymond C Stevens
Journal:  J Biol Chem       Date:  2010-02-10       Impact factor: 5.157

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

Authors:  Vagmita Pabuwal; Zhijun Li
Journal:  Biopolymers       Date:  2011-01       Impact factor: 2.505

5.  In Silico Studies Targeting G-protein Coupled Receptors for Drug Research Against Parkinson's Disease.

Authors:  Agostinho Lemos; Rita Melo; Antonio Jose Preto; Jose Guilherme Almeida; Irina Sousa Moreira; Maria Natalia Dias Soeiro Cordeiro
Journal:  Curr Neuropharmacol       Date:  2018       Impact factor: 7.363

Review 6.  β-Adrenergic receptor, an essential target in cardiovascular diseases.

Authors:  Daniel Chikere Ali; Muhammad Naveed; Andrew Gordon; Fatima Majeed; Muhammad Saeed; Michael I Ogbuke; Muhammad Atif; Hafiz Muhammad Zubair; Li Changxing
Journal:  Heart Fail Rev       Date:  2020-03       Impact factor: 4.214

Review 7.  Understanding functional residues of the cannabinoid CB1.

Authors:  Joong-Youn Shim
Journal:  Curr Top Med Chem       Date:  2010       Impact factor: 3.295

8.  Evaluation of homology modeling of G-protein-coupled receptors in light of the A(2A) adenosine receptor crystallographic structure.

Authors:  Andrei A Ivanov; Dov Barak; Kenneth A Jacobson
Journal:  J Med Chem       Date:  2009-05-28       Impact factor: 7.446

9.  Molecular docking studies of 1-(substituted phenyl)-3-(naphtha [1, 2-d] thiazol-2-yl) urea/thiourea derivatives with human adenosine A(2A) receptor.

Authors:  Faizul Azam; Medapati Vijaya Vara Prasad; Neelaveni Thangavel; Hamed Ismail Ali
Journal:  Bioinformation       Date:  2011-07-19

10.  Molecular Docking and Prediction of Pharmacokinetic Properties of Dual Mechanism Drugs that Block MAO-B and Adenosine A(2A) Receptors for the Treatment of Parkinson's Disease.

Authors:  Faizul Azam; Arwa M Madi; Hamed I Ali
Journal:  J Young Pharm       Date:  2012-07
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