GroEL, along with its coprotein GroES, is essential for ensuring the correct folding of unfolded or newly synthesized proteins in bacteria. GroEL is a complex, allosteric molecule, composed of two heptameric rings stacked back to back, that undergoes large structural changes during its reaction cycle. These structural changes are driven by the cooperative binding and subsequent hydrolysis of ATP, by GroEL. Despite numerous previous studies, the precise mechanisms of allosteric communication and the associated structural changes remain elusive. In this paper, we describe a series of all-atom, unbiased, molecular dynamics simulations over relatively long (50–100 ns) time scales of a single, isolated GroEL subunit and also a heptameric GroEL r...
Despite considerable efforts, elucidating the allostery of large macromolecular assemblies at a mole...
AbstractThe Escherichia coli chaperonin GroEL, which helps proteins to fold, consists of two heptame...
Chaperonins are intricate allosteric machines formed of two back-to-back, stacked rings of subunits ...
AbstractThe Escherichia coli chaperonin GroEL is a complex of identical subunit proteins (57 kDa eac...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
14 p.GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of su...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
Chaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by the lar...
14 p.GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of su...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
Despite considerable efforts, elucidating the allostery of large macromolecular assemblies at a mole...
AbstractThe Escherichia coli chaperonin GroEL, which helps proteins to fold, consists of two heptame...
Chaperonins are intricate allosteric machines formed of two back-to-back, stacked rings of subunits ...
AbstractThe Escherichia coli chaperonin GroEL is a complex of identical subunit proteins (57 kDa eac...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
14 p.GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of su...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
Chaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by the lar...
14 p.GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of su...
GroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substra...
AbstractChaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by...
AbstractThe chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of...
Despite considerable efforts, elucidating the allostery of large macromolecular assemblies at a mole...
AbstractThe Escherichia coli chaperonin GroEL, which helps proteins to fold, consists of two heptame...
Chaperonins are intricate allosteric machines formed of two back-to-back, stacked rings of subunits ...