AbstractIn order to understand the role of ATP hydrolysis of the chaperonin GroEL during protein folding, we have studied GroEL-GroES complex formation in the presence of ATP or ADP by using capillary electrophoresis and surface plasmon resonance. Capillary electrophoresis analysis showed that the GroEL 14-mer and GroES 7-mer formed a 1:1 complex in the presence of ATP. In the presence of ADP, both the association and dissociation rates of the complex were slower by about one order of magnitude than the rates in the presence of ATP at 25°C. The implications of such a stable complex on the overall mechanism of chaperonin function are discussed
AbstractThe E. coli chaperonin proteins, GroEL and GroES, assist in folding newly synthesized protei...
The particular structural arrangement of chaperonins probably contributes to their ability to assist...
The cylindrical chaperonin GroEL and its lid-shaped cofactor GroES of Escherichia coil have an essen...
AbstractIn order to understand the role of ATP hydrolysis of the chaperonin GroEL during protein fol...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
AbstractThe incubation of chaperonins cpn60 (GroEL) and cpn10 (GroES) from E. coli in the presence o...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
A double ring-shaped GroEL consisting of 14 ATPase subunits assists protein folding, together with c...
AbstractThe chaperon in GroEL is a large, double-ring structure that, together with ATP and the coch...
AbstractThe GroEL chaperonin has the ability to behave as an unfoldase, repeatedly denaturing protei...
AbstractRecent studies of GroE-mediated protein folding indicate that substrate proteins are product...
The bacterial chaperonin GroEL-GroES promotes protein folding through ATP-regulated cycles of substr...
SummaryThe chaperonin GroEL assists the folding of nascent or stress-denatured polypeptides by actio...
AbstractTo know whether the protein released from chaperonin GroEL/ES is in a form committed to the ...
AbstractThe E. coli chaperonin proteins, GroEL and GroES, assist in folding newly synthesized protei...
The particular structural arrangement of chaperonins probably contributes to their ability to assist...
The cylindrical chaperonin GroEL and its lid-shaped cofactor GroES of Escherichia coil have an essen...
AbstractIn order to understand the role of ATP hydrolysis of the chaperonin GroEL during protein fol...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
AbstractThe incubation of chaperonins cpn60 (GroEL) and cpn10 (GroES) from E. coli in the presence o...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
A double ring-shaped GroEL consisting of 14 ATPase subunits assists protein folding, together with c...
AbstractThe chaperon in GroEL is a large, double-ring structure that, together with ATP and the coch...
AbstractThe GroEL chaperonin has the ability to behave as an unfoldase, repeatedly denaturing protei...
AbstractRecent studies of GroE-mediated protein folding indicate that substrate proteins are product...
The bacterial chaperonin GroEL-GroES promotes protein folding through ATP-regulated cycles of substr...
SummaryThe chaperonin GroEL assists the folding of nascent or stress-denatured polypeptides by actio...
AbstractTo know whether the protein released from chaperonin GroEL/ES is in a form committed to the ...
AbstractThe E. coli chaperonin proteins, GroEL and GroES, assist in folding newly synthesized protei...
The particular structural arrangement of chaperonins probably contributes to their ability to assist...
The cylindrical chaperonin GroEL and its lid-shaped cofactor GroES of Escherichia coil have an essen...