Title
Molecular Dynamics Simulations Revealed the Regulation of Ligands to the Interactions between Androgen Receptor and its Coactivator.
Abstract
The androgen receptor (AR) plays important Agonist binding roles in gene expression regulation, sexual phenotype maintenance, and prostate cancer (PCa) development. The communications between the AR ligand-binding domain (LBD) and its coactivator are critical to the activation of AR. It is still unclear how the ligand binding would affect the AR coactivator interactions. In this work, the effects of the ligand binding on the AR coactivator communications were explored by molecular dynamics (MD) simulations. The results showed that the ligand binding regulates the residue interactions in the function site AF-2. The ligand-to-coactivator allosteric pathway, which involves the coactivator, helix 3 (H3), helix 4 (H4), the loop between H3 and H4 (L3), and helix 12 (H12), and ligands, was characterized. In addition, the interactions of residues on the function site BF-3, especially on the boundary of AF-2 and BF-3, are also affected by the ligands. The MM/GBSA free energy calculations demonstrated that the binding affinity between the coactivator and apo-AR is roughly weaker than those between the coactivator and antagonistic ARs but stronger than those between the coactivator and agonistic ARs. The results indicated that the long-range electrostatic interactions and the conformational entropies are the main factors affecting the binding free energies. In addition, the F876L mutation on AR-LBD affects the ligand-to-coactivator allosteric pathway, which could be the reason for point mutation induced tolerance for the antagonistic drugs such as enzalutamide. Our study would help to develop novel drug candidates against PCa.
Year
DOI
Venue
2018
10.1021/acs.jcim.8b00283
JOURNAL OF CHEMICAL INFORMATION AND MODELING
DocType
Volume
Issue
Journal
58
8
ISSN
Citations 
PageRank 
1549-9596
0
0.34
References 
Authors
0
9
Name
Order
Citations
PageRank
Na Liu100.68
Wenfang Zhou201.01
Yue Guo3103.40
Junmei Wang411.03
Weitao Fu500.34
Huiyong Sun6346.09
Dan Li7266.82
Mojie Duan800.68
Tingjun Hou942754.50