Nuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-binding domain (LBD), and most NR LBDs lack obvious entry/exit routes upon the protein surface. Thus, significant NR conformational rearrangements must accompany ligand binding and release. The precise nature of these processes, however, remains poorly understood. Here, we utilize locally enhanced sampling (LES) molecular dynamics computer simulations to predict molecular motions of x-ray structures of thyroid hormone receptor (TR) LBDs and determine events that permit ligand escape. We find that the natural ligand 3,5,3'-triiodo-L-thyronine (T(3)) dissociates from the TRalpha1 LBD along three competing pathways generated through i), opening of helix (H...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
Thyroid hormone receptors (TRs) are members of the nuclear receptor superfamily of ligand-activated ...
AbstractNuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-bin...
Nuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-binding dom...
AbstractNuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-bin...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Steered molecular dynamics simulations of ligand dissociation from Thyroid hormone receptors indicat...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly α-helical...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
Thyroid hormone receptors (TRs) are members of the nuclear receptor superfamily of ligand-activated ...
Trabalho completo: acesso restrito, p. 125–131Some nuclear receptor (NR) ligands promote dissociatio...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
Thyroid hormone receptors (TRs) are members of the nuclear receptor superfamily of ligand-activated ...
AbstractNuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-bin...
Nuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-binding dom...
AbstractNuclear receptor (NR) ligands occupy a pocket that lies within the core of the NR ligand-bin...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Thyroid hormone receptors (TR) are hormone-dependent transcription regulators that play a major role...
Steered molecular dynamics simulations of ligand dissociation from Thyroid hormone receptors indicat...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly α-helical...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
Thyroid hormone receptors (TRs) are members of the nuclear receptor superfamily of ligand-activated ...
Trabalho completo: acesso restrito, p. 125–131Some nuclear receptor (NR) ligands promote dissociatio...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
Thyroid hormone receptors (TRs) are members of the nuclear receptor superfamily of ligand-activated ...