GroESL is an essential bacterial chaperone system comprising the homotetradecameric, double ring GroEL and the homoheptameric cochaperone GroES that is highly conserved from bacteria to man. This class of chaperonins (large, double ring chaperones are called chaperonins) uses ATP binding and hydrolysis to fold nascent or stress denatured polypeptides into their appropriate native conformations. E. coli GroESL has been shown to be the only chaperone system required for organismal growth and viability under all conditions and thus has been posited as a potential antibiotic target. To date, nearly all functional studies have been carried out in E. coli GroESL and it has been assumed this is a viable surrogate for other b...
Molecular chaperones ensure that their substrate proteins reach the functional native state and prev...
Chaperonins are required for correct folding of many proteins. They exist in two phylogenetic groups...
Abstract Background GroESL is a heat-shock protein ubiquitous in bacteria and eukaryotic organelles....
As the GroES/GroEL chaperonin system is the only bacterial chaperone that is essential under all con...
As the GroES/GroEL chaperonin system is the only bacterial chaperone that is essential under all con...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The GroES/GroEL chaperonin system is essential to bacterial life. As such, it holds great potential...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
The GroE chaperonin system can adapt to and function at various environmental folding conditions. To...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractThe chaperonin GroEL contains two seven-subunit rings, and allosteric signals between them a...
Motivation: Theoretical considerations have indicated that the amount of chaperonin GroEL in Escheri...
The GroES and GroEL proteins of Escherichia coli function together as the GroE molecular chaperone m...
Molecular chaperones ensure that their substrate proteins reach the functional native state, and pre...
Molecular chaperones ensure that their substrate proteins reach the functional native state, and pre...
Molecular chaperones ensure that their substrate proteins reach the functional native state and prev...
Chaperonins are required for correct folding of many proteins. They exist in two phylogenetic groups...
Abstract Background GroESL is a heat-shock protein ubiquitous in bacteria and eukaryotic organelles....
As the GroES/GroEL chaperonin system is the only bacterial chaperone that is essential under all con...
As the GroES/GroEL chaperonin system is the only bacterial chaperone that is essential under all con...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The GroES/GroEL chaperonin system is essential to bacterial life. As such, it holds great potential...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
The GroE chaperonin system can adapt to and function at various environmental folding conditions. To...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractThe chaperonin GroEL contains two seven-subunit rings, and allosteric signals between them a...
Motivation: Theoretical considerations have indicated that the amount of chaperonin GroEL in Escheri...
The GroES and GroEL proteins of Escherichia coli function together as the GroE molecular chaperone m...
Molecular chaperones ensure that their substrate proteins reach the functional native state, and pre...
Molecular chaperones ensure that their substrate proteins reach the functional native state, and pre...
Molecular chaperones ensure that their substrate proteins reach the functional native state and prev...
Chaperonins are required for correct folding of many proteins. They exist in two phylogenetic groups...
Abstract Background GroESL is a heat-shock protein ubiquitous in bacteria and eukaryotic organelles....