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Original Articles

Investigation on critical structural motifs of ligands for triggering glucocorticoid receptor nuclear migration through molecular docking simulations

, , , &
Pages 1214-1231 | Received 09 Aug 2015, Accepted 15 Jul 2015, Published online: 14 Aug 2015
 

Abstract

The glucocorticoid receptor (GR), a transcription factor regulating gene expression in a ligand-dependent fashion, is known for flexibility in adapting various ligands with their structures ranging from steroid to non-steroid. However, in our previous study, GR shows a stringent discrimination against a set of steroid ligands with highly similar structures for triggering its nuclear migration. In order to resolve this puzzle, we employed molecular docking simulations to investigate the origin of this structural discrimination. By analyzing the docking orientations and the related ligand–GR interaction patterns, we found that the hydrophilicity mismatch between the docking ligand and the GR ligand-binding site is the main cause combined with the steric hindrance and structural rigidness of these steroid ligands. Furthermore, we utilized this knowledge to rationalize how the structure–binding interaction of non-steroid ligands triggers GR nuclear migration with their structures available in Protein Data Bank.

Acknowledgment

We are grateful to National Center for High-performance Computing, Taiwan, for the computer time and facilities.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was supported by the Ministry of Science and Technology [grant number 102-2113-M-0005-007].

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