In E. coli cells, rescue of non-native proteins and promotion of native state structure is assisted by the chaperonin GroEL. An important key to this activity lies in the structure of the apical domain of GroEL (GroEL-AD) (residue 191–376), which recognizes and binds non-native protein molecules through hydrophobic interactions. In this study, we investigated the effects of GroEL-AD on the aggregation of various client proteins (α-Synuclein, Aβ42, and GroES) that lead to the formation of distinct protein fibrils in vitro. We found that GroEL-AD effectively inhibited the fibril formation of these three proteins when added at concentrations above a critical threshold; the specific ratio differed for each client protein, reflecting the relativ...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractThe chaperonin GroEL plays an essential role in promoting protein folding and in protecting ...
Alzheimer's disease is a chronic neurodegenerative disease characterized by the accumulation of path...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
AbstractHere we report an NMR study on the substrate interaction modes of GroEL using amyloid β (Aβ)...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Many protein misfolding diseases are due to changes in protein homeostasis. This might lead to prote...
AbstractThe quantitative contribution of chaperonin GroEL to protein folding in E. coli was analyzed...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in response ...
AbstractThe chaperonin GroEL is a double toriodal assembly that with its cochaperonin GroES facilita...
The GroE chaperonin system can adapt to and function at various environmental folding conditions. To...
AbstractThe molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in r...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...
AbstractThe chaperonin GroEL plays an essential role in promoting protein folding and in protecting ...
Alzheimer's disease is a chronic neurodegenerative disease characterized by the accumulation of path...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
AbstractHere we report an NMR study on the substrate interaction modes of GroEL using amyloid β (Aβ)...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
Many protein misfolding diseases are due to changes in protein homeostasis. This might lead to prote...
AbstractThe quantitative contribution of chaperonin GroEL to protein folding in E. coli was analyzed...
Chaperonins are a group of molecular chaperones that form large multi subunit structures and are fou...
The molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in response ...
AbstractThe chaperonin GroEL is a double toriodal assembly that with its cochaperonin GroES facilita...
The GroE chaperonin system can adapt to and function at various environmental folding conditions. To...
AbstractThe molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in r...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
AbstractGroEL/S chaperonin ring complexes fold many unrelated proteins. To understand the basis and ...