Steered molecular dynamics simulations of ligand dissociation from Thyroid hormone receptors indicate that dissociation is favored via rearrangements in a mobile part of the LBD comprising H3, the loop between H1 and H2, and nearby beta-sheets, contrary to current models in which the H12 is mostly involved. Dissociation is facilitated in this path by the interaction of the hydrophilic part of the ligand with external water molecules, suggesting strategies to enhance ligand binding affinity.491232
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...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
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...
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...
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...
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...
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 (TR) are hormone-dependent transcription regulators that play a major role...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
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...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...
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...
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...
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...
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...
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 (TR) are hormone-dependent transcription regulators that play a major role...
The ligand binding domain (LBD) of nuclear hormone receptors adopts a very compact, mostly alpha-hel...
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...
Some nuclear receptor (NR) ligands promote dissociation of radiolabeled bound hormone from the burie...