Many neurodegenerative disorders, including Alzheimer's, Parkinson's and the prion diseases, are characterized by a conformational conversion of normally soluble proteins or peptides into pathological species, by a process of misfolding and self-assembly that leads ultimately to the formation of amyloid fibrils. Recent studies support the idea that multiple intermediate species with a wide variety of degrees of neuronal toxicity are generated during such processes. The development of a high level of knowledge of the nature and structure of the pathogenic amyloid species would significantly enhance efforts to underline the molecular origins of these disorders and also to develop both accurate diagnoses and effective therapeutic interventions...
International audienceAlzheimer's and Parkinson's diseases are the most prevalent neurodegenerative ...
Our understanding of the molecular structures of amyloid fibrils that are associated with neurodegen...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Many neurodegenerative disorders, including Alzheimer''s, Parkinson''s and the prion diseases, are c...
Amyloid diseases are characterized by the accumulation of insoluble, -strand-rich aggregates. The un...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Protein misfolding and aggregation into insoluble amyloid deposits are often associated with neurode...
My research project is focused on deciphering the structural basis of toxicity in neurodegenerative ...
Self-assembly of proteins and pep-tides into amyloid structures has been the subject of intense and ...
The discovery that the polypeptide chain has a remarkable and intrinsic propensity to form amyloid-l...
AbstractProtein misfolding and aggregation are known to play a crucial role in a number of important...
Several neurodegenerative diseases, including Alzheimer's, Parkinson's, Huntington's and prion disea...
Amyloid fibers and oligomers are associated with a great variety of human diseases including Alzheim...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
International audienceAlzheimer's and Parkinson's diseases are the most prevalent neurodegenerative ...
Our understanding of the molecular structures of amyloid fibrils that are associated with neurodegen...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Many neurodegenerative disorders, including Alzheimer''s, Parkinson''s and the prion diseases, are c...
Amyloid diseases are characterized by the accumulation of insoluble, -strand-rich aggregates. The un...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Protein misfolding and aggregation into insoluble amyloid deposits are often associated with neurode...
My research project is focused on deciphering the structural basis of toxicity in neurodegenerative ...
Self-assembly of proteins and pep-tides into amyloid structures has been the subject of intense and ...
The discovery that the polypeptide chain has a remarkable and intrinsic propensity to form amyloid-l...
AbstractProtein misfolding and aggregation are known to play a crucial role in a number of important...
Several neurodegenerative diseases, including Alzheimer's, Parkinson's, Huntington's and prion disea...
Amyloid fibers and oligomers are associated with a great variety of human diseases including Alzheim...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
International audienceAlzheimer's and Parkinson's diseases are the most prevalent neurodegenerative ...
Our understanding of the molecular structures of amyloid fibrils that are associated with neurodegen...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...