The recent advances in membrane protein crystallography have provided extremely valuable structural information of the superfamily of GPCRs (G-protein-coupled receptors). This has been particularly true for a few receptors whose structure was solved several times under different biochemical conditions. It follows that the mechanisms of receptor conformational equilibrium and related dynamic events can be explored by computational simulations. In the present article, we summarize our recent understanding of several dynamic features of GPCRs, accomplished through the use of MD (molecular dynamics) simulations. Our pipeline for the MD simulations of GPCRs, implemented in the web service http://gpcr.usc.es, is updated in the present paper and illustrated by recent applications. Special emphasis is put on the A2A adenosine receptor, one of the selected cases where crystal structures in several conformations and conditions exist, and on the dimerization process of the CXCR4 (CXC chemokine receptor 4).
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February 2013
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Conference Article|
January 29 2013
Characterization of the dynamic events of GPCRs by automated computational simulations
Hugo Gutiérrez-de-Terán;
Hugo Gutiérrez-de-Terán
1
*Fundación Pública Galega de Medicina Xenómica, Hospital Clínico Universitario de Santiago, E-15706, Santiago de Compostela, Spain
†Department of Cell and Molecular Biology, Uppsala University, Biomedical Center, Box 596, SE-751 24, Uppsala, Sweden
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Xabier Bello;
Xabier Bello
*Fundación Pública Galega de Medicina Xenómica, Hospital Clínico Universitario de Santiago, E-15706, Santiago de Compostela, Spain
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David Rodríguez
David Rodríguez
2
*Fundación Pública Galega de Medicina Xenómica, Hospital Clínico Universitario de Santiago, E-15706, Santiago de Compostela, Spain
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Biochem Soc Trans (2013) 41 (1): 205–212.
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Received:
October 30 2012
Citation
Hugo Gutiérrez-de-Terán, Xabier Bello, David Rodríguez; Characterization of the dynamic events of GPCRs by automated computational simulations. Biochem Soc Trans 1 February 2013; 41 (1): 205–212. doi: https://doi.org/10.1042/BST20120287
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