<div><p>Group II chaperonins play important roles in protein homeostasis in the eukaryotic cytosol and in Archaea. These proteins assist in the folding of nascent polypeptides and also refold unfolded proteins in an ATP-dependent manner. Chaperonin-mediated protein folding is dependent on the closure and opening of a built-in lid, which is controlled by the ATP hydrolysis cycle. Recent structural studies suggest that the ring structure of the chaperonin twists to seal off the central cavity. In this study, we demonstrate ATP-dependent dynamics of a group II chaperonin at the single-molecule level with highly accurate rotational axes views by diffracted X-ray tracking (DXT). A UV light-triggered DXT study with caged-ATP and stopped-flow fluo...
AbstractThe chaperonins are a family of molecular chaperones present in all three kingdoms of life. ...
A new study in this issue of Structure (Huo et al., 2010) reports the crystal structure of a group I...
AbstractChaperonins use ATPase cycling to promote conformational changes leading to protein folding....
SummaryChaperonins are large ATP-driven molecular machines that mediate cellular protein folding. Gr...
Chaperonins are large ATP-driven molecular machines that mediate cellular protein folding. Group II ...
Group II chaperonins are essential mediators of cellular protein folding in eukaryotes and archaea. ...
Group II chaperonins are essential mediators of cellular protein folding in eukaryotes and archaea. ...
SummaryGroup II chaperonins are ATP-dependent ring-shaped complexes that bind nonnative polypeptides...
Chaperonins are double-ring protein assemblies with a central cavity that provides a sequestered env...
Chaperonins are double-ring protein assemblies with a central cavity that provides a sequestered env...
Group II chaperonins found in archaea and in eukaryotic cytosol mediate protein folding without a Gr...
Chaperonins are ubiquitous protein assemblies present in bacteria, eukaryota, and archaea, facilitat...
AbstractChaperonins are double-ring protein assemblies with a central cavity that provides a sequest...
The ATP-dependence of folding chamber closure in the 16-subunit homo-oligomeric chaperonin from arch...
Chaperonins are intricate allosteric machines formed of two back-to-back, stacked rings of subunits ...
AbstractThe chaperonins are a family of molecular chaperones present in all three kingdoms of life. ...
A new study in this issue of Structure (Huo et al., 2010) reports the crystal structure of a group I...
AbstractChaperonins use ATPase cycling to promote conformational changes leading to protein folding....
SummaryChaperonins are large ATP-driven molecular machines that mediate cellular protein folding. Gr...
Chaperonins are large ATP-driven molecular machines that mediate cellular protein folding. Group II ...
Group II chaperonins are essential mediators of cellular protein folding in eukaryotes and archaea. ...
Group II chaperonins are essential mediators of cellular protein folding in eukaryotes and archaea. ...
SummaryGroup II chaperonins are ATP-dependent ring-shaped complexes that bind nonnative polypeptides...
Chaperonins are double-ring protein assemblies with a central cavity that provides a sequestered env...
Chaperonins are double-ring protein assemblies with a central cavity that provides a sequestered env...
Group II chaperonins found in archaea and in eukaryotic cytosol mediate protein folding without a Gr...
Chaperonins are ubiquitous protein assemblies present in bacteria, eukaryota, and archaea, facilitat...
AbstractChaperonins are double-ring protein assemblies with a central cavity that provides a sequest...
The ATP-dependence of folding chamber closure in the 16-subunit homo-oligomeric chaperonin from arch...
Chaperonins are intricate allosteric machines formed of two back-to-back, stacked rings of subunits ...
AbstractThe chaperonins are a family of molecular chaperones present in all three kingdoms of life. ...
A new study in this issue of Structure (Huo et al., 2010) reports the crystal structure of a group I...
AbstractChaperonins use ATPase cycling to promote conformational changes leading to protein folding....