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Computational Investigation on the Allosteric Modulation of Androgen Receptor

Computational Investigation on the Allosteric Modulation of Androgen Receptor
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摘要 Androgens have similar structures with different biological activities. To identify molecular determinants responsible for the activity difference, we have docked six steroidal androgens to the binding site or the surface of androgen receptor by using molecular docking with computational investigation. The energy was calculated respectively based on the QM (quantum mechanics) and MM (molecular mechanics) methods. The result shows that the allosteric modulation of androgen receptor plays an important role in the binding process between androgens and receptor. The open state receptor is less stable than the close state one, but the latter is more favorable for binding with androgens. It is worthy of note that when the androgen receptors binding or without binding with androgen are in close state, they are difficult to return to their open state. This phenomenon is an exception of the well known two-state model theory in which the two states are reversible. Whether the internal of close state androgen receptor has a combination of androgen or not, the androgen receptor surface can be combined with another androgen, and their surface binding energies could be very close. The result is consistent with the experimental observations, but this phenomenon of continuous combination from open state is also an exception of the two-state model theory. Androgens have similar structures with different biological activities. To identify molecular determinants responsible for the activity difference, we have docked six steroidal androgens to the binding site or the surface of androgen receptor by using molecular docking with computational investigation. The energy was calculated respectively based on the QM (quantum mechanics) and MM (molecular mechanics) methods. The result shows that the allosteric modulation of androgen receptor plays an important role in the binding process between androgens and receptor. The open state receptor is less stable than the close state one, but the latter is more favorable for binding with androgens. It is worthy of note that when the androgen receptors binding or without binding with androgen are in close state, they are difficult to return to their open state. This phenomenon is an exception of the well known two-state model theory in which the two states are reversible. Whether the internal of close state androgen receptor has a combination of androgen or not, the androgen receptor surface can be combined with another androgen, and their surface binding energies could be very close. The result is consistent with the experimental observations, but this phenomenon of continuous combination from open state is also an exception of the two-state model theory.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2012年第12期1868-1877,共10页 结构化学(英文)
基金 supported by the National Natural Science Foundation of China (No. 21073034) the State Key Laboratory of Structural Chemistry (No. 20090060) the Natural Science Foundation of Fujian Province (X0650070) the Science and Technology Development Foundation of Fuzhou University (2010-XY-9)
关键词 allosteric modulation DOCKING computational investigation ANDROGENS androgen receptor allosteric modulation, docking, computational investigation, androgens, androgen receptor
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  • 1Kubli-Garfias, C. Ab initio comparative study of the electronic structure of testosterone, epitestosterone and androstenedione. Journal of Molecular Structure (Theochem). 1998, 422, 167-177.
  • 2Matias, P. M.; Donner, P.; Coelho, R,; Thomaz, M.; Peixoto, C.; Macedo, S.; Otto, N.; Joschko, S.; Scholz, P.; Wegg, A.; Basler, S.; Schafer, M.; Egner, U.; Carrondo, M. A. Structural evidence for ligand specificity in the binding domain of the human androgen receptor-implications for pathogenic gene mutations. Journal of Biological Chemistry 2000, 275,26164-26171.
  • 3Gao, W. Q.; Bohl, C. E.; Dalton, J. T. Chemistry and structural biology of androgen receptor. Chem. Rex,. 2005, 105, 3352-3370.
  • 4Jesus-Tran, K. E; Cote, P. L.; Cant'in, L.; Blanchet, J.; Labrie, F.; Bpeton, R. Comparison of crystal structures of human androgen receptor ligand-binding domain complexed with various agonists reveals molecular determinants responsible for binding affinity. Protein Sci. 2006, 15, 987-999.
  • 5Bridges, T. M.; Lindsley, C. W. G-protein-coupled receptors from classical modes of modulation to allosteric mechanisms. ACS CHEMICAL BIOLOGY. 2008, 3,530-541.
  • 6Keov, E; Sexton, P. M.; Christopoulos, A. Allosteric modulation of G protein-coupled receptors: a pharmacological perspective. Neuropharmacology 2011, 60, 24-35.
  • 7Gregory, K. J.; Dong, E. N,; Meiler, J.; Conn, P. J. Allosteric modulation of metabotropic glutamate receptors: structural insights and therapeutic potential. Neuropharmacology 2011, 60, 66-81.
  • 8Maehle, A. H.; Prtill, C. R.; Halliwell, R. F. The emergence of the drug receptor theory. Nat. Rer DlwgDiscov. 2002, 8, 637-641.
  • 9Black, J. W.; Left, P, Operalional models of pharmacological agonism. Proc. R. Soc. Lond. B 1983, 220, 141-162.
  • 10Left, P. The two-state model of receptor activation. Trends Pharmaeol. Sci. 1995, 16, 89-97.

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