AbstractHere we report an NMR study on the substrate interaction modes of GroEL using amyloid β (Aβ) as a model ligand. We found that GroEL could suppress Aβ(1–40) amyloid formation by interacting with its two hydrophobic segments Leu17-Ala21 and Ala30-Val36, which involve key residues in fibril formation. The binding site of Aβ(1–40) was mapped on a pair of α-helices located in the GroEL apical domain. These results provide insights into chaperonin recognition of amyloidogenic proteins of pathological interest
International audienceSmall heat-shock proteins, including αB-crystallin (αB), play an important par...
The molecular chaperone GroEL is designed to promote protein folding and prevent aggregation. Howeve...
The GroEL-GroES is an essential molecular chaperon system that assists protein folding in cell. Bind...
In E. coli cells, rescue of non-native proteins and promotion of native state structure is assisted ...
AbstractThe chaperonin GroEL plays an essential role in promoting protein folding and in protecting ...
We have studied the interaction of the prototypical chaperonin GroEL with the prion domain of the He...
The accumulation of amyloid fibrils is characteristic of neurodegenerative diseases such as Alzheime...
Alzheimer’s disease is an incurable neurodegenerative disorder linked to the amyloid β (Aβ) peptide,...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
The mechanism of GroEL (chaperonin)-mediated protein folding is only partially understood. We have a...
Alzheimer's disease is a chronic neurodegenerative disease characterized by the accumulation of path...
AbstractThe most common isoforms of amyloid-β (Aβ) proteins are composed of 40 or 42 amino acid resi...
The interaction at neutral pH between wild-type and a variant form (R3A) of the amyloid fibril-formi...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
The interaction at neutral pH between wild-type and a variant form (R3A) of the amyloid fibril-formi...
International audienceSmall heat-shock proteins, including αB-crystallin (αB), play an important par...
The molecular chaperone GroEL is designed to promote protein folding and prevent aggregation. Howeve...
The GroEL-GroES is an essential molecular chaperon system that assists protein folding in cell. Bind...
In E. coli cells, rescue of non-native proteins and promotion of native state structure is assisted ...
AbstractThe chaperonin GroEL plays an essential role in promoting protein folding and in protecting ...
We have studied the interaction of the prototypical chaperonin GroEL with the prion domain of the He...
The accumulation of amyloid fibrils is characteristic of neurodegenerative diseases such as Alzheime...
Alzheimer’s disease is an incurable neurodegenerative disorder linked to the amyloid β (Aβ) peptide,...
The remarkable ability of the chaperonin GroEL to recognise a diverse range of non-native states of ...
The mechanism of GroEL (chaperonin)-mediated protein folding is only partially understood. We have a...
Alzheimer's disease is a chronic neurodegenerative disease characterized by the accumulation of path...
AbstractThe most common isoforms of amyloid-β (Aβ) proteins are composed of 40 or 42 amino acid resi...
The interaction at neutral pH between wild-type and a variant form (R3A) of the amyloid fibril-formi...
Advances in understanding how GroEL binds to non-native proteins are reported. Conformational flexib...
The interaction at neutral pH between wild-type and a variant form (R3A) of the amyloid fibril-formi...
International audienceSmall heat-shock proteins, including αB-crystallin (αB), play an important par...
The molecular chaperone GroEL is designed to promote protein folding and prevent aggregation. Howeve...
The GroEL-GroES is an essential molecular chaperon system that assists protein folding in cell. Bind...