The study of associations between two biomolecules is the key to understanding molecular function and recognition. Molecular function is often thought to be determined by underlying structures. Here, combining a single-molecule study of protein binding with an energy-landscape-inspired microscopic model, we found strong evidence that biomolecular recognition is determined by flexibilities in addition to structures. Our model is based on coarse-grained molecular dynamics on the residue level with the energy function biased toward the native binding structure ( the Go model). With our model, the underlying free-energy landscape of the binding can be explored. There are two distinct conformational states at the free-energy minimum, one with pa...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
148 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Energy landscape theory provi...
We review insights from computational studies of affinities of ligands binding to proteins. The powe...
Combining a single-molecule study of protein binding with a coarse grained molecular dynamics model ...
Combining a single-molecule study of protein binding with a coarse grained molecular dynamics model ...
Biomolecular functions are determined by their interactions with other molecules. Biomolecular recog...
Biomolecular recognition often involves large conformational changes, sometimes even local unfolding...
<div><p>Flexibility in biomolecular recognition is essential and critical for many cellular activiti...
AbstractBiomolecular recognition often involves large conformational changes, sometimes even local u...
Protein dynamics takes place on a rugged funnel-like energy landscape that is biased towards the nat...
These authors contributed equally. Protein-protein association is often accompanied by changes in re...
In this dissertation, we develop quantitative approaches, rooted in statistical mechanics, to unders...
AbstractBiomolecular associations often accompanied by large conformational changes, sometimes foldi...
Protein-protein association is often accompanied by changes in receptor and ligand structure. This i...
Biomolecular associations often accompanied by large conformational changes, sometimes folding and u...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
148 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Energy landscape theory provi...
We review insights from computational studies of affinities of ligands binding to proteins. The powe...
Combining a single-molecule study of protein binding with a coarse grained molecular dynamics model ...
Combining a single-molecule study of protein binding with a coarse grained molecular dynamics model ...
Biomolecular functions are determined by their interactions with other molecules. Biomolecular recog...
Biomolecular recognition often involves large conformational changes, sometimes even local unfolding...
<div><p>Flexibility in biomolecular recognition is essential and critical for many cellular activiti...
AbstractBiomolecular recognition often involves large conformational changes, sometimes even local u...
Protein dynamics takes place on a rugged funnel-like energy landscape that is biased towards the nat...
These authors contributed equally. Protein-protein association is often accompanied by changes in re...
In this dissertation, we develop quantitative approaches, rooted in statistical mechanics, to unders...
AbstractBiomolecular associations often accompanied by large conformational changes, sometimes foldi...
Protein-protein association is often accompanied by changes in receptor and ligand structure. This i...
Biomolecular associations often accompanied by large conformational changes, sometimes folding and u...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
148 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Energy landscape theory provi...
We review insights from computational studies of affinities of ligands binding to proteins. The powe...