Molecular interactions between fenoterol stereoisomers and derivatives and the β2-adrenergic receptor binding site studied by docking and molecular dynamics simulations

被引:29
作者
Plazinska, Anita [1 ]
Kolinski, Michal [1 ,2 ]
Wainer, Irving W. [3 ]
Jozwiak, Krzysztof [1 ]
机构
[1] Med Univ Lublin, Lab Med Chem & Neuroengn, PL-20093 Lublin, Poland
[2] Polish Acad Sci, Mossakowski Med Res Ctr, Bioinformat Lab, PL-02106 Warsaw, Poland
[3] NIA, Lab Clin Invest, Baltimore, MD 21224 USA
关键词
beta(2) adrenergic receptor; GPCRs; Docking; Fenoterol; Molecular dynamics; Stereoisomers; BETA-ADRENERGIC-RECEPTOR; HIGH-AFFINITY BINDING; STRUCTURE PREDICTION; CRYSTAL-STRUCTURE; PARTIAL AGONISTS; FIELD ANALYSIS; AMINO-ACID; MODELS; STEREOCHEMISTRY; IDENTIFICATION;
D O I
10.1007/s00894-013-1981-y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The beta(2) adrenergic receptor (beta(2)-AR) has become a model system for studying the ligand recognition process and mechanism of the G protein coupled receptors activation. In the present study stereoisomers of fenoterol and some of its derivatives (N = 94 molecules) were used as molecular probes to identify differences in stereo-recognition interactions between beta(2)-AR and structurally similar agonists. The present study aimed at determining the 3D molecular models of the fenoterol derivative-beta(2)-AR complexes. Molecular models of beta(2)-AR have been developed by using the crystal structure of the human beta(2)-AR T4 lysozyme fusion protein with bound (S)-carazolol (PDB ID: 2RH1) and more recently reported structure of a nanobody-stabilized active state of the beta(2)-AR with the bound full agonist BI-167107 (PDB ID: 3P0G). The docking procedure allowed us to study the similarities and differences in the recognition binding site(s) for tested ligands. The agonist molecules occupied the same binding region, between TM III, TM V, TM VI and TM VII. The residues identified by us during docking procedure (Ser203, Ser207, Asp113, Lys305, Asn312, Tyr308, Asp192) were experimentally indicated in functional and biophysical studies as being very important for the agonist-receptor interactions. Moreover, the additional space, an extension of the orthosteric pocket, was identified and described. Furthermore, the molecular dynamics simulations were used to study the molecular mechanism of interaction between ligands ((R,R')- and (S,S')-fenoterol) and beta(2)-AR. Our research offers new insights into the ligand stereoselective interaction with one of the most important GPCR member. This study may also facilitate the design of improved selective medications, which can be used to treat, prevent and control heart failure symptoms.
引用
收藏
页码:4919 / 4930
页数:12
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