Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexibility in the GroEL apical domain, which could account for the variety of substrates that GroEL binds, is illustrated by comparison of several independent crystallographic structures of apical domain constructs that show conformational plasticity in helices H and I. Additionally, ESI-MS indicates that apical domain constructs have co-populated conformations at neutral pH. To assess the ability of different apical domain conformers to bind co-chaperone and substrate, model peptides corresponding to the mobile loop of GroES and to helix D from rhodanese were studied. Analysis of apical domain-peptide complexes by ESI-MS indicates that only the f...
The chaperonin GroEL is a large complex composed of 14 identical 57-kDa subunits that requires ATP a...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
AbstractThe chaperonin GroEL is a double toriodal assembly that with its cochaperonin GroES facilita...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
AbstractThe Escherichia coli molecular chaperone GroEL can functionally interact with non-native for...
AbstractThe chaperonin GroEL binds nonnative substrate protein in the central cavity of an open ring...
The GroEL-GroES is an essential molecular chaperon system that assists protein folding in cell. Bind...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The bacterial chaperonin GroEL-GroES promotes protein folding through ATP-regulated cycles of substr...
In E. coli cells, rescue of non-native proteins and promotion of native state structure is assisted ...
The chaperonin GroEL is a large complex composed of 14 identical 57-kDa subunits that requires ATP a...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
AbstractThe chaperonin GroEL is a double toriodal assembly that with its cochaperonin GroES facilita...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
AbstractThe Escherichia coli molecular chaperone GroEL can functionally interact with non-native for...
AbstractThe chaperonin GroEL binds nonnative substrate protein in the central cavity of an open ring...
The GroEL-GroES is an essential molecular chaperon system that assists protein folding in cell. Bind...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The bacterial chaperonin GroEL-GroES promotes protein folding through ATP-regulated cycles of substr...
In E. coli cells, rescue of non-native proteins and promotion of native state structure is assisted ...
The chaperonin GroEL is a large complex composed of 14 identical 57-kDa subunits that requires ATP a...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...