The functioning of proteins requires highly specific dynamics, which depend critically on the details of how amino acids are packed. Hinge motions are the most common type of large motion, typified by the opening and closing of enzymes around their substrates. The packing and geometries of residues are characterized here by graph theory. This characterization is sufficient to enable reliable hinge predictions from a single static structure, and notably, this can be from either the open or the closed form of a structure. This new method to identify hinges within protein structures is called PACKMAN. The predicted hinges are validated by using permutation tests on B-factors. Hinge prediction results are compared against lists of manually-cura...
Many proteins change their conformation upon ligand binding. For instance, bacterial periplasmic bin...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
SummaryA major challenge in computational protein design is to identify functional sequences as top ...
Hinge motions are important for molecular recognition, and knowledge of their location can guide the...
Background: Hinge-bending movements in proteins comprising two or more domains form a large class of...
Abstract Background Protein motions play an essential role in catalysis and protein-ligand interacti...
ABSTRACT The activity of many proteins induces conformational transitions by hinge-bending, which in...
<p><b>Copyright information:</b></p><p>Taken from "Hinge Atlas: relating protein sequence to sites o...
With the use of a recently developed method, twenty-four proteins for which two or more X-ray confor...
Hinge motions are essential for many protein functions, and their dynamics are important to understa...
AbstractWe performed a detailed analysis of conformational transition pathways for a set of 10 prote...
Over the past two decades the field of computational protein design has produced striking successes,...
A construct that simplifies the complexity of residue packing would significantly impact our underst...
The novel knob-socket model provides a basis for defining how sequence determines protein structure....
Successfully incorporating backbone flexibility into the computational modeling and design of protei...
Many proteins change their conformation upon ligand binding. For instance, bacterial periplasmic bin...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
SummaryA major challenge in computational protein design is to identify functional sequences as top ...
Hinge motions are important for molecular recognition, and knowledge of their location can guide the...
Background: Hinge-bending movements in proteins comprising two or more domains form a large class of...
Abstract Background Protein motions play an essential role in catalysis and protein-ligand interacti...
ABSTRACT The activity of many proteins induces conformational transitions by hinge-bending, which in...
<p><b>Copyright information:</b></p><p>Taken from "Hinge Atlas: relating protein sequence to sites o...
With the use of a recently developed method, twenty-four proteins for which two or more X-ray confor...
Hinge motions are essential for many protein functions, and their dynamics are important to understa...
AbstractWe performed a detailed analysis of conformational transition pathways for a set of 10 prote...
Over the past two decades the field of computational protein design has produced striking successes,...
A construct that simplifies the complexity of residue packing would significantly impact our underst...
The novel knob-socket model provides a basis for defining how sequence determines protein structure....
Successfully incorporating backbone flexibility into the computational modeling and design of protei...
Many proteins change their conformation upon ligand binding. For instance, bacterial periplasmic bin...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
SummaryA major challenge in computational protein design is to identify functional sequences as top ...